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    <loc>https://www.aquanty.com/blog</loc>
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    <lastmod>2026-03-26</lastmod>
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      <image:title>Aquanty Blog</image:title>
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  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-quantifying-the-effects-of-water-management-decisions-on-streambank-stability</loc>
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    <priority>0.5</priority>
    <lastmod>2026-03-24</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Quantifying the effects of water management decisions on streambank stability - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Quantifying the effects of water management decisions on streambank stability - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 5. Map of Lower Republican River Basin study area.</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Quantifying the effects of water management decisions on streambank stability - Make it stand out</image:title>
      <image:caption>Fig. 8. Relationship between the factor of safety values under wet (high precipitation and elevated groundwater levels) and dry (low precipitation and reduced groundwater levels) conditions.</image:caption>
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  <url>
    <loc>https://www.aquanty.com/blog/hydrosphereai-casestudy-nanaimo-river-near-cassidy-january-2026-high-flow-event</loc>
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    <priority>0.5</priority>
    <lastmod>2026-03-12</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/687e56ea-5822-4f77-b99c-20379154465d/HSAI+Case+Study+5.gif</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI Case Study: Nanaimo River Near Cassidy – January 2026 High-Flow Event - Make it stand out</image:title>
      <image:caption>HydroSphereAI’s machine learning-driven forecasting system.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/41993f7d-2864-4f90-aba5-86d9dac43014/Nanaimo+Image.png</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI Case Study: Nanaimo River Near Cassidy – January 2026 High-Flow Event - Make it stand out</image:title>
      <image:caption>The Nanaimo River near Cassidy (Water Survey of Canada Station 08HB034).</image:caption>
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  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-stable-water-isotopes-improve-calibration-and-flow-path-identification-in-integrated-hydrological-model</loc>
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    <priority>0.5</priority>
    <lastmod>2026-03-10</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Stable Water Isotopes Improve Calibration and Flow path Identification in Integrated Hydrological Model - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Stable Water Isotopes Improve Calibration and Flow path Identification in Integrated Hydrological Model - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 1. (a) Map of the Pallaslompolo catchment areal extent as modeled in this study, displaying groundwater monitoring locations, the lysimeters network along the snow survey line, the stream gauge and sampling site, and the regional landcover distribution; (b) Inset map; geographic location of the Pallaslompolo catchment in Finland’s subarctic, within the circumpolar Arctic; (c) Three-dimensional (3-D) model mesh and subsurface domain layers, comprising (i) bottom glacial till, (ii) top glacial till, and (iii–vii) five peat layers arranged from deep to superficial, with a cross-sectional view at the catchment outlet illustrating the stratigraphic sequence used in the simulations.</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Stable Water Isotopes Improve Calibration and Flow path Identification in Integrated Hydrological Model - Make it stand out</image:title>
      <image:caption>Fig. 10. Depth-averaged δ¹⁸O maps (3D porous media domain collapsed into 2D) and boxplots from four calibration setups (Baseline, PE-GQ, PE-GQI, PE-I) during the early recession phase (on day June 15th, 2020). The left panel shows spatial maps of δ¹⁸O, with hotter (red tone) indicates depleted (more negative) isotope values, cooler (blue tone) indicates enriched (less negative) values. The right panel displays boxplots summarizing the spatial distribution of δ¹⁸O values across the catchment for each setup</image:caption>
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  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-march-2026</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-03-06</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/aquanty-featured-in-waterpower-canada-guest-blog-navigating-climate-change-in-hydropower</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-02-24</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/7d366195-bb9a-4407-b708-2682288f7730/1770307143749.jpg</image:loc>
      <image:title>Aquanty Blog - Aquanty Featured in WaterPower Canada Guest Blog: Navigating Climate Change in Hydropower - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>The HydroSphereAI (HSAI) article in the January/February 2026 issue of the Water Canada Magazine.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-modeling-the-water-use-associated-with-energy-consumption-changes-on-saltwater-intrusion</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-02-24</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Modeling the water use associated with energy consumption changes on saltwater intrusion in the Pearl River estuary, China - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/c9a44505-41b9-4be8-abf4-508a11b0e009/Rh+image+1.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Modeling the water use associated with energy consumption changes on saltwater intrusion in the Pearl River estuary, China - Make it stand out</image:title>
      <image:caption>Fig. 1. Study area of Pearl River Estuary (left), and location of stations for FVCOM model validation (right).</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Modeling the water use associated with energy consumption changes on saltwater intrusion in the Pearl River estuary, China - Make it stand out</image:title>
      <image:caption>Fig. 3. Comparison between simulated and observed data of water level in different stations.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-a-hydraulic-mixing-cell-method-to-quantify-the-groundwater-component-of-streamflow-within-spatially-distributed-fully-integrated-surface-watergroundwater-flow-models</loc>
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    <priority>0.5</priority>
    <lastmod>2026-02-10</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – A hydraulic mixing-cell method to quantify the groundwater component of streamflow within spatially distributed fully integrated surface water–groundwater flow models - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/614d9844-0579-4dd1-99a9-4fec7a88734c/RH+-+A+hydraulic+mixing-cell+method+Image+1.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – A hydraulic mixing-cell method to quantify the groundwater component of streamflow within spatially distributed fully integrated surface water–groundwater flow models - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 1. Conceptual diagram of a surface water-groundwater catchment (left hand side) featuring different flow regimes (as illustrated in the right part of the figure). The white sections of the catchment adjacent to the stream represent the groundwater discharge upslope of the stream (return flow). The dashed lines on the right part of the figure represent the water table. The flow direction is towards the reader.</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/865f5994-9654-42a1-80a7-1222aeb8a17c/RH+-+A+hydraulic+mixing-cell+method+Image+2.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – A hydraulic mixing-cell method to quantify the groundwater component of streamflow within spatially distributed fully integrated surface water–groundwater flow models - Make it stand out</image:title>
      <image:caption>Fig 4. Test case 1: “two-region” model grid, and HMCs for HGS nodes in “two-region” model grid. In the right part of the figure the two nodes at y=0 belong to HMC 1, the two nodes at y=1 belong to HMC 2 and the nodes at y=2 belong to HMC 3.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hydrosphereai-featured-in-water-canadas-jan-feb-2026-magazine</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-02-23</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/daa8ee4f-ba3f-45ed-b3e1-a4dabdd7fb2d/HSAI+Feature+in+Water+Canada+Magazine+2026.png</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI Featured in Water Canada’s January/February 2026 Magazine - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>The HydroSphereAI (HSAI) article in the January/February 2026 issue of the Water Canada Magazine.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-february-2026</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-02-04</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-hydrogeosphere-development-2025-the-year-in-review</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-01-29</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-characterizing-spatial-heterogeneity-of-hydraulic-conductivity-using-borehole-nmr-in-a-complex-groundwater-flow-system</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-01-13</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Characterizing Spatial Heterogeneity of Hydraulic Conductivity Using Borehole NMR in a Complex Groundwater Flow System - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/64ffabdd-721d-451d-929b-ea380f782757/Contour-plots-of-K-distribution-in-A-A-and-B-B-sections-based-on-comparative-cases-of.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Characterizing Spatial Heterogeneity of Hydraulic Conductivity Using Borehole NMR in a Complex Groundwater Flow System - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 5. Contour plots of K distribution in A‐A′ and B‐B′ sections based on comparative cases of spatial modeling, including (a) Krig_ordinary_5: the ordinary kriging using five nuclear magnetic resonance (NMR) logs, (b) Krig_ordinary_8: the ordinary kriging using eight NMR logs, (c) Krig_indicator_8: the indicator kriging using eight NMR logs, (d) Krig_ordinary_9 (permeameter): the ordinary kriging using nine boreholes of permeameter measurements, (e) Zonation_geology_8: the visually‐interpreted geological zonation using eight NMR logs, (f) Zonation_clustering_8: the spatially associated zonation with clustering using eight NMR logs, (g) Multi‐level_5: the multi‐level heterogeneity characterization using five NMR logs, (h) Multi‐level_8: the multi‐level heterogeneity characterization using eight NMR logs, and (i) Multi‐level_9 (permeameter): the multi‐level heterogeneity characterization using nine boreholes of permeameter measurements. Six aquifer and aquitard layers obtained by clustering NMR logs are labeled in part (f). Logging depths of borehole NMR and core sampling for permeameter tests are indicated in these cross‐sections using black lines.</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/3f5fd8f0-48be-4431-9b70-2bd2b73b542d/Comparison-of-K-in-PW3-between-the-model-derived-K-based-on-nuclear-magnetic-resonance.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Characterizing Spatial Heterogeneity of Hydraulic Conductivity Using Borehole NMR in a Complex Groundwater Flow System - Fig. 10. Relative concentration distributions (C/C0) at 4, 12, 48, and 96 hr for all cases. (a–j) represent C/C0 profiles for Cases I, II-a, II-b, III-a, III-b, IV-a, IV-b, V-a, V-b, and VI. (k) Figure shows the C/C0 distributions based on the spatial distribution of true K field. Influent and effluent ports in each subplot are denoted with downward and upward-pointing triangles, respectively. Contours with C/C0 under 0.1 are removed for clarity</image:title>
      <image:caption>Fig. 7. Comparison of K in PW3 between the model‐derived K based on nuclear magnetic resonance logging and the permeameter K measurements. (a) Is the K profiles along PW3, in which the locations of Aquifer 1 and Aquifer 2 are labeled. (b)–(f) Are the scatterplots of model‐derived K versus permeameter K measurements using five spatial interpolation methods. The black dashed lines are the 1:1 lines indicating the perfect match, while the red dashed lines indicate the range in which the model fit is within one order of magnitude.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hydrosphereai-casestudy-wakeman-river</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-01-12</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/4d3c89bc-5f35-439a-91d1-0e9c2c0af38d/HSAI+Case+Study+-+Wakeman+Gif+1.gif</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI Case Study: Wakeman River - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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      <image:title>Aquanty Blog - HydroSphereAI Case Study: Wakeman River - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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      <image:title>Aquanty Blog - HydroSphereAI Case Study: Wakeman River - Make it stand out</image:title>
      <image:caption>The Wakeman River (Station 08GF007) is located on the central coast of British Columbia.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-january-2026</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-01-12</lastmod>
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  <url>
    <loc>https://www.aquanty.com/blog/webinar-introducing-hgs2vtu-for-hgs-model-post-processing</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-12-12</lastmod>
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  <url>
    <loc>https://www.aquanty.com/blog/natural-and-anthropogenic-drivers-of-the-water-table-dynamics-in-a-riparian-fen-peatland</loc>
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    <priority>0.5</priority>
    <lastmod>2026-02-04</lastmod>
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  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-december-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-12-11</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/using-water-sources-extent-during-inundation-as-a-reliable-predictor-for-vegetation-zonation-in-a-natural-wetland-floodplain</loc>
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    <priority>0.5</priority>
    <lastmod>2026-02-04</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Using water sources extent during inundation as a reliable predictor for vegetation zonation in a natural wetland floodplain - Make it stand out</image:title>
      <image:caption>Figure 1. Lower Biebrza valley floodplain with the river network and vegetation in 2000 (Matuszkiewicz et al., 2000) (right panel). Location of the Biebrza catchment study area (black outline) and the floodplain (black patch) in Poland (left panel); the major rivers Wisla, Bug, Narew and Biebrza are indicated with blue lines. The legend concerns only the right panel. (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.)</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/75171c42-a613-40fe-ac2d-59a14d2a6d56/RH+3-2.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Using water sources extent during inundation as a reliable predictor for vegetation zonation in a natural wetland floodplain - Make it stand out</image:title>
      <image:caption>Figure 12. Degree of mixing between river water and floodplain water (i.e. groundwater discharge, rainfall, and snowmelt) simulated with the IHM and HGS methods during a spring flood event on 27th of March 2005 in a southern section of the floodplain. High d values indicate similar proportions of river and floodplain water, i.e. presence of mixing, and low values indicate that one source dominates over another, i.e. no mixing (see Table 1). The color of the velocity vectors is proportional to the water velocity (the length of each vector is the same).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/groundwater-flow-and-age-in-topography-driven-groundwater-flow-systems-with-geological-barriers</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-12-11</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-external-and-internal-drivers-behind-the-formation-vegetation-succession-and-carbon-balance-of-a-subarctic-fen-margin</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-11-18</lastmod>
    <image:image>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – External and internal drivers behind the formation, vegetation succession, and carbon balance of a subarctic fen margin - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/49578c4a-a65b-4f4e-b8fd-18ba465f3439/bg-22-3047-2025-f07-web.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – External and internal drivers behind the formation, vegetation succession, and carbon balance of a subarctic fen margin - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Figure 7. (a) The GW–SW exchange flux patterns from the Lompolojänkkä sub-basin averaged for summer 2017, representing the current climate conditions. Positive flux values indicate the locations of groundwater exfiltration and infiltration towards groundwater. (b) The groundwater table elevation changes result from the drier climate conditions. Negative values indicate that the groundwater level decreases, whereas and positive values indicate that the groundwater level increases.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-november-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-11-05</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/manitoba-cooperator-manitoba-forage-and-grasslands-association-wins-water-canada-innovation-award</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-11-05</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/289b3a17-18f9-4e0d-98e0-4a17a5ba721f/209367_web1_Aquanty-forecast-tool-subwatersheds-2021-screencapture.jpg</image:loc>
      <image:title>Aquanty Blog - Manitoba Forage and Grasslands Association wins Water Canada innovation award - Make it stand out</image:title>
      <image:caption>A demonstration of the Manitoba Forage and Grassland Association’s Aquanty-powered forecasting tool, as it stood in 2021. Photo: Screen capture/Manitoba Forage and Grassland Association</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hcs-feature-highlight-real-time-soil-moisture-forecasting-on-demand</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-12-02</lastmod>
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      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Real-Time Soil Moisture Forecasting on Demand - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/3d9f31e4-7429-44b5-b913-5fd24265cd97/Aquanty+HCS+Blog+Image+Updated.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Real-Time Soil Moisture Forecasting on Demand - Make it stand out</image:title>
      <image:caption>Figure 1. Behind the Technology</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/7984001c-6e7f-4acd-8537-af04f7f2fcf0/Soil+Moisture+Forecasting+Image+1.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Real-Time Soil Moisture Forecasting on Demand - Make it stand out</image:title>
      <image:caption>Figure 2. HydroClimateSight web interface</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/bf317fd2-a634-4b5b-9af6-d066c9815aba/Soil+Moisture+Forecasting+Image+2.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Real-Time Soil Moisture Forecasting on Demand - Make it stand out</image:title>
      <image:caption>Figure 3. Exploring the station window</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/5b2c80b8-d2bb-4a2b-be69-9f0885a85494/Soil+Moisture+Forecasting+Image+3.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Real-Time Soil Moisture Forecasting on Demand - Make it stand out</image:title>
      <image:caption>Figure 4. Auto-Build the Model</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/eece7c1f-73b3-45ca-9e8c-06a5348f763d/Soil+Moisture+Forecasting+Image+4.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Real-Time Soil Moisture Forecasting on Demand - Make it stand out</image:title>
      <image:caption>Figure 5. Set Forecast Parameters and Run a Forecast</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1b446055-4c5c-4873-9989-74c136e75e2f/Soil+Moisture+Forecasting+Image+5.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Real-Time Soil Moisture Forecasting on Demand - Make it stand out</image:title>
      <image:caption>Figure 6. Set Forecast Parameters and Run a Forecast</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/97d37719-dfff-43d5-8427-8a0a7011689d/Soil+Moisture+Forecasting+Image+6.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Real-Time Soil Moisture Forecasting on Demand - Make it stand out</image:title>
      <image:caption>Figure 7. View Your Results</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/fa77b862-b5fe-4d22-9a5f-728fe6363735/Soil+Moisture+Forecasting+Image+7.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Real-Time Soil Moisture Forecasting on Demand - Make it stand out</image:title>
      <image:caption>Figure 8. View Your Results</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hydrosphereai-aquantys-artificial-intelligence-platform-has-won-the-water-canada-new-tech-award-for-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-10-17</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/70a92ed2-36d8-4120-bd5c-6b2376ba2c07/HSAI_icon_logo_rgb.png</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI — Aquanty’s Artificial Intelligence Platform — has won the Water Canada New Tech Award for 2025. - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/03e270da-3483-49cf-8bc7-b594d4e5957a/PXL_20251017_014109522.MP.jpg</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI — Aquanty’s Artificial Intelligence Platform — has won the Water Canada New Tech Award for 2025. - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-october-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-10-16</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/improving-precision-in-regional-scale-numerical-simulations-of-groundwater-flow-into-underground-openings</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-10-22</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/03d0b018-30f2-408c-90eb-bfb628a97a6e/HTH+RH+2025.png</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Improving precision in regional scale numerical simulations of groundwater flow into underground openings - Make it stand out</image:title>
      <image:caption>Figure 9: Distribution of the maximum principal hydraulic conductivity within the domain. It is noted that the equivalent hydraulic conductivity for the finite elements were generated from a random fracture network.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hcs-feature-highlight-remote-sensing-map-layers</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-12-02</lastmod>
    <image:image>
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      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Unlock Powerful Insights with HydroClimateSight’s Remote Sensing Map Layers - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/93d49389-7c3e-4d1c-9413-351a3936f22b/Remote+Sensing+Blogpost+Images.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Unlock Powerful Insights with HydroClimateSight’s Remote Sensing Map Layers - Make it stand out</image:title>
      <image:caption>Figure 1. Accessing Map Layers on HydroClimateSight.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/bf396c81-f89a-47b1-b6d1-473825f614f6/Remote+Sensing+Blogpost+Images+Updated+%28Image%29.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Unlock Powerful Insights with HydroClimateSight’s Remote Sensing Map Layers - Make it stand out</image:title>
      <image:caption>Figure 2. a) SnoDAS, b) 24-hour Accumulated Precipitation, and c) Weather Radar Precipitation.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/b0991a2e-f580-4229-8a44-c2636561aca8/Remote+Sensing+Blogpost+Images+Updated+%28Vertical%29.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Unlock Powerful Insights with HydroClimateSight’s Remote Sensing Map Layers - Make it stand out</image:title>
      <image:caption>Figure 3. a) Canadian Land Inventory, b) Annual Crop Inventory, c) Canadian Detailed Soil Surveys, and d) Provincial Digital Elevation Model.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/model-simplification-to-simulate-groundwater-recharge-from-a-perched-gravel-bed-river</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-12-11</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/641aa1b3-32b7-46cb-8e51-837bc5c95578/RH+Image+Updated.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Model simplification to simulate groundwater recharge from a perched gravel-bed river - Make it stand out</image:title>
      <image:caption>Figure 4. Water content fields simulated using the 2D (a) and the 3D (b) models for 18 August 2020.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/is-the-water-balance-of-your-waste-rock-pile-reliable-a-framework-for-improving-assessment-of-water-inputs-and-outputs-for-a-typical-storage-facility</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-12-11</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-september-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-09-10</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/quantifying-the-potential-of-using-soil-moisture-active-passive-smap-soil-moisture-variability-to-predict-subsurface-water-dynamics</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-09-09</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/bbab663f-3fc9-404b-93c5-da96f8d9546d/hess-29-215-2025-f01-web.png</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Quantifying the potential of using Soil Moisture Active Passive (SMAP) soil moisture variability to predict subsurface water dynamics - Make it stand out</image:title>
      <image:caption>Figure 1. (a) Location of the South Nation Watershed (SNW). (b) The SNW land cover map (source: Agriculture and Agri-Food Canada's Annual Crop Inventory 2015) overlaid with location of the 9 km grids (boxes for the pixels and black dots for the centers) for the SMAP SM product used in this study. (c) Soil map for the SNW (source: Soil Landscapes of Canada version 3.2, Agriculture and Agri-Food Canada), along with the in situ SM monitoring sites. (d) Surface elevation along with location of streamflow gauges. (e) Tile drains installed for the SNW (provided by the South Nation Conservation Authority), along with location of groundwater level monitoring wells.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/aquanty-partners-with-geogreen21-to-expand-hydrogeosphere-in-south-korea</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-28</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/93ef8084-7808-4d0f-9208-47044fb67383/MOU+Photo+3.jpg</image:loc>
      <image:title>Aquanty Blog - Aquanty Partners with GeoGreen21 to Expand HydroGeoSphere in South Korea - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/3f679959-d5f3-4e72-afed-dc5cd1f826d3/AQUANTY+MOU+SIGNING+CEREMONY+2.jpg</image:loc>
      <image:title>Aquanty Blog - Aquanty Partners with GeoGreen21 to Expand HydroGeoSphere in South Korea - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/understanding-topography-driven-groundwater-flow-using-fully-coupled-surface-water-and-groundwater-modeling</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-19</lastmod>
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      <image:title>Aquanty Blog - Staff Research Highlight - Understanding topography-driven groundwater flow using fully-coupled surface-water and groundwater modeling - Make it stand out</image:title>
      <image:caption>Figure 1. Conceptual models used to simulate: (a) pure groundwater flow (Section 2) and (b) fully-coupled surface-water and groundwater flow (Section 3). I and II in (a) are the top surface and the corresponding head boundary condition of the classic Tóthian model (Section 2.1). II is both the top surface and the corresponding head boundary condition of the modified Tóthian model (Section 2.2).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-assessing-the-sensitivity-of-subsurface-mine-dewatering-simulations-to-surface-water-representation</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-12-04</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-vulnerability-of-the-saint-charles-drinking-water-source-portrait-of-the-groundwater-resources-of-the-st-charles-river-watershed-and-their-links-with-surface-water</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-20</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Vulnerability of the Saint-Charles drinking water source: portrait of the groundwater resources of the St-Charles River watershed and their links with surface water - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/5351fc5c-88a3-451f-8ff0-dc897e173244/ArcGIS+story+map+screenshot.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Vulnerability of the Saint-Charles drinking water source: portrait of the groundwater resources of the St-Charles River watershed and their links with surface water - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Gatel, L., Tremblay, Y., Picard, A., N'da, BA, Frot, B., Therrien, R Cloutier, V., Barbecot, F. (June 25, 2024). Vulnerability of the Saint-Charles drinking water source: portrait of the groundwater resources of the St-Charles River watershed and their links with surface water. https://storymaps.arcgis.com/stories/179b86fca3cd4e828026660ad292cfe7</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-august-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-06</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/steady-state-density-driven-flow-and-transport-pseudo-transient-parameter-continuation</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-05</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/0c8a5aac-d7ed-4c4c-a356-42011b43a038/Capture.JPG</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Steady-state density-driven flow and transport: Pseudo-transient parameter continuation - Make it stand out</image:title>
      <image:caption>Figure 1. (a) Modeled Suruga area and (b) hydrogeological conceptual model used for the simulation.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/ccd7afac-6f14-40db-8aa2-76f0cfccd77a/Capture.JPG</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Steady-state density-driven flow and transport: Pseudo-transient parameter continuation - Make it stand out</image:title>
      <image:caption>Figure 11. (a) Groundwater discharge and (b) vertical profiles of salinity and groundwater velocity with depth.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hcs-feature-highlight-understanding-ensemble-vs-deterministic-forecasting-in-hydrosphereai</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-12-02</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/fd07fad4-f526-42e2-a131-38872a5aa22a/Aquanty+HCS+-+Blog+Post+Banner+-+Ensemble+vs+Deterministic.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Understanding Ensemble vs Deterministic Forecasting in HydroSphereAI - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/e4ecbaf7-6cad-407d-9855-0d26b17d86bc/Picture1.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Understanding Ensemble vs Deterministic Forecasting in HydroSphereAI - Make it stand out</image:title>
      <image:caption>Figure 1. Deterministic forecast (using HRDPS) at Station: 02HB013 (CREDIT RIVER NEAR ORANGEVILLE), illustrating a single possible outcome with no indication of uncertainty. Note: Forecast outputs in HSAI are presented differently than shown here.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/877986ab-4e0a-4469-9a16-40a488ed8c1e/02gg003.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Understanding Ensemble vs Deterministic Forecasting in HydroSphereAI - Make it stand out</image:title>
      <image:caption>Figure 2. Ensemble forecast (using GEPS), showing multiple forecast traces generated from slightly different initial conditions at Station: 02GG003 (SYDENHAM RIVER AT FLORENCE), illustrating a range of possible future outcomes and their spread to capture uncertainty.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/ffd19bd8-27c1-468a-8441-0b777c2f3d3c/Picture3.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Understanding Ensemble vs Deterministic Forecasting in HydroSphereAI - Make it stand out</image:title>
      <image:caption>Figure 3. A lagged ensemble forecast at Station: 02AB014 (NORTH CURRENT RIVER NEAR THUNDER BAY). Four recent HRDPS forecast runs are combined, with each run further diversified by multiple machine learning models. This approach generates a spread of short-term streamflow predictions that reflect both recent model trends and uncertainty.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/78af6716-5aa2-49f7-bf23-0a112c084d23/Picture4.png</image:loc>
      <image:title>Aquanty Blog - HydroClimateSight Feature Highlight: Understanding Ensemble vs Deterministic Forecasting in HydroSphereAI - Make it stand out</image:title>
      <image:caption>Figure 4. Example of a lagged ensemble combining four consecutive forecasts. This figure shows four individual deterministic forecasts issued six hours apart, each starting and ending slightly later than the previous one. When these four forecasts are combined into a lagged ensemble, the result is a single, broader distribution that captures the spread between issue times. The overall range of the lagged ensemble is wider than the spread of the four forecasts alone because each of those forecasts represents the median of an underlying parameter ensemble, so the combined lagged ensemble also incorporates the variability from those ensembles.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-using-an-integrated-3d-hydrological-model-to-investigate-surface-water-groundwater-interactions</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Source Water Protection in Quebec City: Using an integrated 3D hydrological model to investigate surface water-groundwater interactions - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/99e4cf08-5de6-44f2-81b7-026062dd16c2/Poster_EGU25.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Source Water Protection in Quebec City: Using an integrated 3D hydrological model to investigate surface water-groundwater interactions - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Frot, B., Gatel, L., Tremblay, Y., Delottier, H., and Therrien, R.: Source Water Protection in Quebec City: Using an integrated 3D hydrological model to investigate surface water - groundwater interactions, EGU General Assembly 2025, Vienna, Austria, 27 Apr–2 May 2025, EGU25-1312, https://doi.org/10.5194/egusphere-egu25-1312.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hydrosphereai-casestudy-crowe-river-near-glen-alda</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-07-22</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/4c8e3ea6-a6ef-4229-a851-61e08740a976/CV+Gif.gif</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI Case Study: Crowe River Near Glen Alda - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/ad1c1940-914a-4a7c-800b-352512ebd029/croweriver.png</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI Case Study: Crowe River Near Glen Alda - Make it stand out</image:title>
      <image:caption>The Crowe Valley watershed in southern Ontario is located roughly between Toronto and Ottawa. Station 02HK005 is found on the Crowe River near the community of Glen Alda.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hydrosphereai-casestudy-sydenham-river-at-florence</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-02-27</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/c5c54df5-bb33-4b07-b0d1-2fd0f4e617b1/SR+Timelaps+GIF.gif</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI Case Study: Sydenham River at Florence - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f9df034d-2df0-4bbf-9e75-1e17eddc706d/stClaire.png</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI Case Study: Sydenham River at Florence - Make it stand out</image:title>
      <image:caption>The Sydenham River watershed in southern Ontario is located right outside of St. Clair Region. Station 02GG003 is found on the Sydenham River near the community of Florence.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-exploring-the-reliability-of-222rn-as-a-tracer-of-groundwater-age-in-alluvial-aquifers</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-07-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Exploring the reliability of ²²²Rn as a tracer of groundwater age in alluvial aquifers: Insights from the explicit simulation of variable ²²²Rn production - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/72e0c431-2c6c-4fd1-a2f6-f097b341949d/rh-hd.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Exploring the reliability of ²²²Rn as a tracer of groundwater age in alluvial aquifers: Insights from the explicit simulation of variable ²²²Rn production - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Figure 1. 2D model setup. A: Geometry and boundary conditions; B: Variable head boundary condition at model outlet.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/fe0caabd-763a-47c2-8248-092a4567016b/1-s2.0-S0043135423003159-gr3_lrg.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Exploring the reliability of ²²²Rn as a tracer of groundwater age in alluvial aquifers: Insights from the explicit simulation of variable ²²²Rn production - Make it stand out</image:title>
      <image:caption>Figure 3. Effect of hydraulic conductivity and longitudinal dispersivity on simulated steady-state ²²²Rn concentrations. Results from a single realization of the distribution of ²²²Rn production rates and the six parameter combinations are shown for illustrative purposes. A: Equivalent equilibrium ²²²Rn concentrations in the model domain, shown here as a proxy for ²²²Rn production rates. They represent theoretical equilibrium ²²²Rn activities in saturated conditions without flow or molecular diffusion; B: ²²²Rn activities in steady-state conditions. Black contour lines represent mean groundwater age.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/application-of-different-weighting-schemes-and-stochastic-simulations-to-parameterization-processes-considering-observation-error</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-07-08</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/e7443b8b-0616-4dc1-84e1-de37af0deb0e/figure+1+-+HW.png</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Application of Different Weighting Schemes and Stochastic Simulations to Parameterization Processes Considering Observation Error - Make it stand out</image:title>
      <image:caption>Figure 1. (a) Location of the study site; (b) monitoring stations and stream network within the watershed; and (c) 3D subsurface model and dominant hydrostratigraphy/soil types of the study site.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-july-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-07-02</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-reclamation-for-aspen-revegetation-in-the-athabasca-oil-sands-understanding-soil-water-dynamics-through-unsaturated-flow-modelling</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-06-26</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Reclamation for aspen revegetation in the Athabasca oil sands: Understanding soil water dynamics - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1746108675032-YTSJZ3BXNCK1VYE7W0N0/images_large_cjss2010-035f1.jpeg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Reclamation for aspen revegetation in the Athabasca oil sands: Understanding soil water dynamics - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Figure 1. Location of the oil sands regions and the boreal plains within the Canadian boreal forest, with disturbance in the Athabasca region illustrated through the use of a LANDSAT-5 colour composite for (a) August 1985 and (b) September 2010 with coordinates given in meters, UTM-12. The Alberta inset shows the Utikuma Region Study Area (URSA) where evapotranspiration data for aspen were measured.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/69d4ffc6-d69d-4d41-9bf7-109d03ad5dc6/images_large_cjss2010-035f9.jpeg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Reclamation for aspen revegetation in the Athabasca oil sands: Understanding soil water dynamics - Make it stand out</image:title>
      <image:caption>Figure 9. Daily soil water dynamics for different depths of capping material used on top of tailings sand: (a) 0 m, (b) 0.5 m and (c) 1.0 m considering different water table depths commonly found on the boreal plains (2, 4, 6 and 12 m). The top plot shows the variability of the climatological conditions for the simulated period (1919–2006).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-reactive-transport-modelling-of-acid-mine-drainage-within-discretely-fractured-porous-media-plume-evolution-from-a-surface-source-zone</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Reactive transport modelling of acid mine drainage within discretely fractured porous media: Plume evolution from a surface source zone - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/44595594-2277-4cf0-9b9e-07965cfe7c3a/rh-1.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Reactive transport modelling of acid mine drainage within discretely fractured porous media: Plume evolution from a surface source zone - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Figure. 1. Validation of the discrete fracture approach in the AMD transport model for a conservative solute: (a) 400-day concentration contours in the plane perpendicular to the fracture, (b) A comparison of longitudinal profiles from the numerical and CRAFLUSH analytical model (Sudicky and Frind, 1982), and (c) Comparison of transverse profiles at 400 days, at depths of 3, 6 and 9 m. For clarity, not all numerical data points are shown.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/aquanty-selected-as-finalist-for-new-tech-award-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-10-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/70a92ed2-36d8-4120-bd5c-6b2376ba2c07/HSAI_icon_logo_rgb.png</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI Selected as Finalist for New Tech Award - Water Canada Awards - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/software-sale-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-06-20</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/4ede2d56-5936-46a5-8469-4771238a4e1e/HGS+Software+Sale+WORD+CLOUD.png</image:loc>
      <image:title>Aquanty Blog - HydroGeoSphere Canada Day Software Sale Announcement - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/a-continuous-differentiable-formulation-for-seepage-face-boundary-conditions-in-dynamic-groundwater-systems</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-06-10</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f5ae70c0-0be2-4bed-a51f-42989920f7ca/research+highlight+screenshot.png</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - A Continuous Differentiable Formulation for Seepage Face Boundary Conditions in Dynamic Groundwater Systems - Make it stand out</image:title>
      <image:caption>Figure 1. Schematic of (a) a hydrologic system and the development of a seepage face in a 2-D cross sectional hillslope and (b) surface water depth (red line) and exchange flux distributions (blue line).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hydrosphereai-casestudy-hydrosphereai-case-study-sauble-river-at-allenford-spring-melt-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-06-19</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/8d694849-aecd-4304-9312-18cd795337ab/Chart+Video.gif</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI Case Study: Sauble River at Allenford — Spring Melt 2025 - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/c7ea23a0-5b9e-4d15-8d5c-0e3a51b5a592/Picture1.png</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI Case Study: Sauble River at Allenford — Spring Melt 2025 - Make it stand out</image:title>
      <image:caption>The Grey Sauble watershed in southern Ontario is located roughly between Lake Huron and Georgian Bay. Station 2FA004 is found on the Sauble River in the town of Allenford.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-june-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-06-03</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/manitoba-cooperator-farm-climate-adaptation-on-tap-with-mfga-project</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-10-24</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/3d43f9fc-8640-483c-97c2-e706f685de7c/manitoba+c.jpg</image:loc>
      <image:title>Aquanty Blog - Manitoba Cooperator - Farm climate adaptation on tap with MFGA project - Make it stand out</image:title>
      <image:caption>The MFGA plans to use $130K in funding to model how climate change will affect water resources in key Manitoba watersheds and guide agricultural adaptation. Photo: File</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-hydrosphereai-machine-learning-driven-insights-and-hydrological-forecasting-in-a-changing-climate</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-06-19</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/a-dynamic-meshing-scheme-for-integrated-hydrologic-modeling-to-represent-evolving-landscapes</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-06-04</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/da2bb965-6819-44ae-b3f5-a66d191daed3/1-s2.0-S0048969725007648-ga1_lrg.jpg</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - A dynamic meshing scheme for integrated hydrologic modeling to represent evolving landscapes - Make it stand out</image:title>
      <image:caption>GRAPHICAL ABSTRACT. Illustrative example of the time-varying topographic model with the dynamic meshing scheme: a) excavation and b) material placement processes.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/cdf9b1c4-2591-4e62-94d7-d06a85438181/rh-berg.png</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - A dynamic meshing scheme for integrated hydrologic modeling to represent evolving landscapes - Make it stand out</image:title>
      <image:caption>Figure 4. Locations of aggregate mining sites in the Grand River Watershed with the Lower Nith River subwatershed (inset).</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/0abb49c9-a65b-404f-96c2-90c92ee4f05a/A+dynamic+meshing+scheme+for+integrated+hydrologic+modeling+to+represent+evolving+landscapes_page-0011.jpg</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - A dynamic meshing scheme for integrated hydrologic modeling to represent evolving landscapes - Make it stand out</image:title>
      <image:caption>Figure 7. Spatiotemporal evolution of surface-subsurface hydrologic conditions during the mining operation of Case 2: a), c) and e) for the surface water system and b), d), and f) for the groundwater system along cross-section A-A’.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-modeling-fate-and-transport-of-e-coli-in-a-small-watershed-with-grazing-lands-around-a-pond</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Modeling fate and transport of E. coli in a small watershed with grazing lands around a pond - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/d2e18caa-89c0-4acf-bf18-4f91046f36bc/AGU2024+Poster.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Modeling fate and transport of E. coli in a small watershed with grazing lands around a pond - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Pachepsky, Y. A., Yakirevich, A., Widmer, J., Stocker, M., Hill, R. L., Coffin, A., &amp; Dunn, L. (2024). Modeling fate and transport of E. coli in a small watershed with grazing lands around a pond. https://agu.confex.com/agu/agu24/meetingapp.cgi/Paper/1622936</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-may-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-05-08</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-monetizing-the-role-of-water-in-sustaining-watershed-ecosystem-services-using-a-fully-integrated-subsurfacesurface-water-model</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Monetizing the role of water in sustaining watershed ecosystem services using a fully integrated subsurface–surface water model - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/9678b314-11c8-486a-bdfa-7fb887f5d082/RH+2.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Monetizing the role of water in sustaining watershed ecosystem services using a fully integrated subsurface–surface water model - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 2. Key components of terrestrial hydrological cycle mapped by the HGS model. However, it should be noted that the integrity of the HGS outputs are also dependent on the model scale, in that, for example, a model of a 150,000 km2 river basin is best suited to answer big picture questions (i.e., basin water balance, climate change impacts, regional groundwater), while a model built for the SNW can be used to address questions pertaining to localized processes (i.e., individual wetland influences, groundwater recharge and discharge patterns, flood extent, local aquifer conditions, local soil moisture conditions).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-april-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-06-03</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-numerical-analysis-of-thermal-response-tests-with-groundwater-flow-and-heat-transfer-model</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Numerical analysis of thermal response tests with groundwater flow and heat transfer model - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/ae001576-b943-418d-976a-a8761c31fd72/rh+5.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Numerical analysis of thermal response tests with groundwater flow and heat transfer model - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 5. (a) Model mesh and temperature distribution at (b) the beginning and (c) the end of the heating period (50.5 h) for the TRT simulation, South Dump, BH-4, 07/28/2007. The mesh surface area covers 3.31 x 3.31 m.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/spatiotemporal-estimation-of-groundwater-and-surface-water-conditions-by-integrating-deep-learning-and-physics-based-watershed-models</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/445638bb-76cd-4e4a-b59c-3b6fd7377795/1-s2.0-S2589914724000185-ga1_lrg.jpg</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Spatiotemporal estimation of groundwater and surface water conditions by integrating deep learning and physics-based watershed models - Make it stand out</image:title>
      <image:caption>GRAPHICAL ABSTRACT</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/effects-of-soil-heterogeneity-and-preferential-flow-on-the-water-flow-and-isotope-transport-in-an-experimental-hillslope</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/959079fd-a092-46b5-9ff7-b70402710b7a/1-s2.0-S0048969724006855-ga1_lrg.jpg</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Effects of soil heterogeneity and preferential flow on the water flow and isotope transport in an experimental hillslope - Make it stand out</image:title>
      <image:caption>GRAPHICAL ABSTRACT</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-march-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-03-06</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-using-the-debugcontrol-file-for-real-time-tuning-of-hgs-simulation-performance</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-03-05</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Using the debug.control file for real-time tuning of HGS simulation performance - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-the-hyposalar-project-integrating-hyporheic-exchange-fluxes-into-atlantic-salmon-salmo-salar-spawning-habitat-models</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – The HypoSalar project: Integrating hyporheic exchange fluxes into Atlantic salmon (Salmo salar) spawning habitat models - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/e7980599-7b7e-47fb-900a-b6995adb1f16/research+highlight+image_BM.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – The HypoSalar project: Integrating hyporheic exchange fluxes into Atlantic salmon (Salmo salar) spawning habitat models - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 1. The Sautariski River study site. A) Orthomosaic with HGS model domain (dashed red line); B) Shaded Digital Elevation Model; C) Zoomed-in orthomosaic; D) Zoomed-in Digital Elevation Model. The Digital Elevation Model has a resolution of 0.08 m.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/snow-modelling-products-on-hydroclimatesight</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-20</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/c08f8937-1093-46b3-a8ed-34f8ac3a50d4/Picture1.png</image:loc>
      <image:title>Aquanty Blog - Snow Modelling Products on HydroClimateSight - Make it stand out</image:title>
      <image:caption>Figure 1: Mapping SWE data via SNODAS data layer</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/826deb88-b78d-4e67-809b-ecb8e3de5f4c/Picture2.png</image:loc>
      <image:title>Aquanty Blog - Snow Modelling Products on HydroClimateSight - Make it stand out</image:title>
      <image:caption>Figure 2: Integrated, catchment level historic SWE data</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/254aab87-e1f6-41ee-8c13-114af5173dff/Picture3.png</image:loc>
      <image:title>Aquanty Blog - Snow Modelling Products on HydroClimateSight - Make it stand out</image:title>
      <image:caption>Figure 3: Integrated, catchment level SWE forecast</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/assessment-of-hydraulic-and-thermal-properties-of-the-antarctic-active-layer-insights-from-laboratory-column-experiments-and-inverse-modelling</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-18</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/5543c604-8c99-4870-9b31-9a538f41b1f1/aquanty-rh-hyountae.png</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Assessment of hydraulic and thermal properties of the Antarctic active layer: Insights from laboratory column experiments and inverse modelling - Make it stand out</image:title>
      <image:caption>GRAPHICAL ABSTRACT</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/water-sources-and-threshold-behaviors-of-streamflow-generation-in-a-mountain-headwater-catchment</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-04</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/23587fdb-6fed-496b-8ceb-3f27a7ad36f1/aquanty-rh-hyountae2.png</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Water sources and threshold behaviors of streamflow generation in a mountain headwater catchment - Make it stand out</image:title>
      <image:caption>Fig. 1. (a) Sampling locations of the study area in the southeast of China. (b) Landscape photo of Mukeng catchment and sampling processes of rain, soil and stream water.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-february-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-03-06</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-development-of-a-fully-integrated-hydrological-fate-and-transport-model-for-plant-protection-products-incorporating-groundwater-tile-drainage-and-runoff</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-01-29</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/a3717a66-a71c-48c8-ba68-6e617fbc2354/fenvs-12-1505480-g001.jpg</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Development of a fully integrated hydrological fate and transport model for plant protection products: incorporating groundwater, tile drainage, and runoff - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 1. Cross section through the HGS tile drain model for the FOCUS surface water D4 scenario, (A) showing model geometry, layering, and (B) boundary conditions (BCs).</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/992a6350-0558-4e9d-8f48-c3a436369a0a/fenvs-12-1505480-g007.jpg</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Development of a fully integrated hydrological fate and transport model for plant protection products: incorporating groundwater, tile drainage, and runoff - Make it stand out</image:title>
      <image:caption>Fig 7. Cross section through the FOCUS surface water D4 scenario, as implemented in HGS with a potato crop, showing simulated Test Substance I concentrations within the porous media (micropore) domain in μg L−1 on 21 August 1985 with the water table position (black line). The tile drain position is indicated with a black circle. The depth scale is approximate.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/improving-monitoring-network-design-to-detect-leaks-at-hazardous-facilities</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-01-21</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/93af4aaf-f0b8-4072-9e5e-40fee129f0db/1-s2.0-S0048969724054068-ga1_lrg.jpg</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Improving monitoring network design to detect leaks at hazardous facilities: Lessons from a CO2 storage site - Make it stand out</image:title>
      <image:caption>GRAPHICAL ABSTRACT</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-january-2025</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-03-06</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-december-2024</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-03-06</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/estimating-cumulative-wastewater-treatment-plant-discharge-influences-on-acesulfame-and-escherichia-coli-in-a-highly-impacted-watershed-with-a-fully-integrated-modelling-approach</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS HIGHLIGHT – Estimating cumulative wastewater treatment plant discharge influences on acesulfame and Escherichia coli in a highly impacted watershed with a fully-integrated modelling approach - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/325b14da-dd7b-4800-88d3-2dcf72dc2f57/rh-update-1.png</image:loc>
      <image:title>Aquanty Blog - HGS HIGHLIGHT – Estimating cumulative wastewater treatment plant discharge influences on acesulfame and Escherichia coli in a highly impacted watershed with a fully-integrated modelling approach - Make it stand out</image:title>
      <image:caption>Figure 1. (a) Location of the Grand River Watershed, (b) watershed topographic profile, and (c) the spatially varying finite element mesh within the 3D HydroGeoSphere model (modified after Hwang et al., 2015)</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-the-impact-of-sw-gw-flow-interactions-for-regional-scale-simulation</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-05-20</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/climate-change-impacts-on-mountain-snowpacks</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-01-21</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/14d68304-8ac5-4974-9e59-9e6eb49cd619/aquanty.png</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Climate Change Impacts on Mountain Snowpacks - Make it stand out</image:title>
      <image:caption>Figure 1. Averaged snow water equivalent (SWE) changes between future simulations and reference period for end of century using dynamically downscaled (DD) and statistically downscaled (SD) forcing data averaged over the entire water year.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/great-lakes-basin-heat-waves</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-01-21</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/5f218b63-a2ea-4f15-8a07-adf8b8695c88/colorbars.jpg</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Great Lakes Basin Heat Waves - Make it stand out</image:title>
      <image:caption>Figure 13. Extreme heat event analysis for simulation with CESM forcing and T physics. The three rows display annually averaged number of extreme heat days per year computed using surface temperature, average summer surface relative humidity, and average number of extreme heat days per year computed using the HI. The three columns represent the historical, mid-twenty-first century and end-twenty-first century time periods. Color bar at the bottom represents the scale used for extreme heat days for each column respectively. Note that the scale of colorbars for heat event days differs between the time periods.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/future-snow-changes-over-the-columbia-mountains-canada-using-a-distributed-snow-model</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-01-21</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-november-2024</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-03-06</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-a-comparison-of-sea-level-rise-and-storm-surge-overwash-effects-on-groundwater-salinity-of-a-barrier-island</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-11-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – A Comparison of Sea-level Rise and Storm-Surge Overwash Effects on Groundwater Salinity of a Barrier Island - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/68238564-725c-48e1-8e05-4bc99cf03f53/Frederiks_HGS_highlight+%281%29.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – A Comparison of Sea-level Rise and Storm-Surge Overwash Effects on Groundwater Salinity of a Barrier Island - Make it stand out</image:title>
      <image:caption>Fig 4: Salinity distribution as a fraction of seawater salinity. a) 80 years of sea-level rise b) 40 future 2-year storm events.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-assessing-groundwater-and-surface-water-contributions</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-11-19</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-modeling-low-flow-bedrock-springs-providing-ecological-habitats-with-climate-change-scenarios</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-06-26</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Modeling low-flow bedrock springs providing ecological habitats with climate change scenarios - Make it stand out</image:title>
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    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1045b055-d533-4e74-a45d-82411e6d9a3a/research+highlight+rerender+2.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Modeling low-flow bedrock springs providing ecological habitats with climate change scenarios - Make it stand out</image:title>
      <image:caption>Fig. 4. The numerical model domain showing the discrete fractures: (a) oblique view with centre of model magnified; (b) side view of fracture domain. Between the fractures is an impermeable rock matrix. The four simulated springs are located between x = 1800 m and 2400 m, indicated in part b.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-the-effects-of-land-subsidence-and-its-mitigating-measures-on-shallow-groundwater</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-06-26</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – The effects of land subsidence and its mitigating measures on shallow groundwater salinization in the low-lying coastal plain of East Japan - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/99ddffb3-8473-44ee-a59c-a1686ee5a199/ercad5951f3_hr.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – The effects of land subsidence and its mitigating measures on shallow groundwater salinization in the low-lying coastal plain of East Japan - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 3. The groundwater head distributions of the four cases. (a) The assumed surface topography around 1960s with no pumping stations and (b) with two pumping stations. (c) The current surface topography with no pumping stations including surface water head distribution, and (d) with two pumping stations including surface water head distribution (Tecplot 2018).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-october-2024</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-03-06</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hydrosphereai-featured-in-owcs-innovation-showcase</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-01-12</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/ab6449f3-45f0-4802-9d78-267a902e9eab/Aquanty_HydroSphereAI.jpg</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI featured in OWC’s Innovation Showcase - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/6597c4d8-6fde-4dfd-8eea-89d146f17421/OWC+HydroSphereAI.png</image:loc>
      <image:title>Aquanty Blog - HydroSphereAI featured in OWC’s Innovation Showcase - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>The Ontario Water Consortium (OWC) Innovation Showcase website.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-analyzing-variation-of-the-water-table-level-with-three-dimensional-numerical-simulations</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-09-27</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Analyzing variation of the water table level with three-dimensional numerical simulations to assess reclamation techniques for an acidic tailings impoundment - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/90f49c64-027c-48c6-a492-43cce41a175c/images_large_cgj-2019-0694f9.jpeg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Analyzing variation of the water table level with three-dimensional numerical simulations to assess reclamation techniques for an acidic tailings impoundment - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 9. (a) Projected topography for site closure used for the long-term simulations; in this scenario, the Manitou tailings are covered by up to 10 m of Goldex tailings. Solid black lines indicate location of (b) W–E and (c) N–S cross sections. MTM, Modified Transverse Mercator (NAD83 / MTM zone 9).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/aquanty-featured-in-cwra-water-news-magazine</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-09-27</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/2453b9c8-082f-4f1e-a061-0b7212ed6c4e/CWRA+Article+AI+-+2.png</image:loc>
      <image:title>Aquanty Blog - “Homegrown Technologies Could Play a Key Role in the World’s Water Future” - Aquanty Featured in CWRA’s Water News Magazine - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/03cdc54f-beb3-4647-b461-73d76eb9b685/MFGA+Screenshots.png</image:loc>
      <image:title>Aquanty Blog - “Homegrown Technologies Could Play a Key Role in the World’s Water Future” - Aquanty Featured in CWRA’s Water News Magazine - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>The MFGA-Aquanty Forecasting Tool provides real-time intelligence on groundwater, surface water and soil moisture conditions throughout the Assiniboine River Basin, helping users to manage risks associated with extreme weather events, build climate resiliency, and improve water management capacity across the watershed.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/announcing-hydroclimatesight</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-06-19</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/b8e574f3-9edf-4004-8b72-2d5b237338a5/HCS.JPG</image:loc>
      <image:title>Aquanty Blog - Announcing HydroClimateSight - Aquanty’s comprehensive suite of web services - Make it stand out</image:title>
      <image:caption>HydroClimateSight supports decision making with best-in-class, physics and AI-based hydro-climatological forecasting</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f94aa461-8e06-4935-b1f1-81b1503b20e9/HCS+Flyer+Shadow+1.png</image:loc>
      <image:title>Aquanty Blog - Announcing HydroClimateSight - Aquanty’s comprehensive suite of web services - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-improving-control-of-contamination-from-waste-rock-piles</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Improving control of contamination from waste rock piles - Make it stand out</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f097d226-4542-4407-8226-07bca2e4c923/Figure+4.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Improving control of contamination from waste rock piles - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 4. Conceptual layout of the simulated WRP (a) without a cover for a homogeneous representation of the waste rock (dark grey) and with (b) a horizontal cover made of compacted material (light grey) and homogeneous core (dark grey) waste rock zone, (c) an inclined cover (5%) and homogeneous waste rock zone, and (d) an inclined cover and 50 fractures in the core waste rock zone; the free drainage boundary (black line) is applied in all cases. Left and bottom boundary are impervious.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-september-2024</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-03-06</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-assessing-the-impact-of-surface-water-and-groundwater-interactions-for-regional-scale-simulations-of-water-table-elevation</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-09-17</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Assessing the impact of surface water and groundwater interactions for regional-scale simulations of water table elevation - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1e839e85-fd7a-48e8-990f-d08ca55ce9e0/Fig.2_v3.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Assessing the impact of surface water and groundwater interactions for regional-scale simulations of water table elevation - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 1. Map of Southern Quebec. The locations of the virtual wells used for the sensitivity analysis are shown. Eight major river catchments are in the region and surface water divides are indicated by thick black lines. Streams and lakes are also shown. Simplified schematic representation of the surface water mass balance module computing potential infiltration fluxes available for the HydroGeoSphere model. η is the melting constant, also known as the day degree factor. DCRT, CRT and FN are the minimum, the mean soil water capacity and the maximum soil infiltration capacity, respectively.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/5af8b2af-c0d0-4087-ada1-64175e36d991/Fig.3_bis-Aquanty.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Assessing the impact of surface water and groundwater interactions for regional-scale simulations of water table elevation - Make it stand out</image:title>
      <image:caption>Fig. 3. Model comparison based on (a-b) regional simulation of water table elevations in February and April (c) Volumetric exchange flux (infiltration/exfiltration) and (d) Mean sensitivity of water table elevations to bedrock hydraulic conductivity (K) for the pilot points distributed over the whole model domain. In a, b and d, the model comparison is presented in a combined fashion by subtracting the results (i.e., simulated water table elevation or sensitivities) of the one-way groundwater model from the results of the two-way integrated model. In c, the model comparison is presented by plotting water balance results for the entire model domain.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-intro-to-hgs-pdaf</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-10-28</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-a-black-box-automated-approach-to-calibrate-numerical-simulations-and-optimize-cover-design</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-09-17</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – A black-box automated approach to calibrate numerical simulations and optimize cover design: Application to a flow control layer constructed on an experimental waste rock pile - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/494bb974-d035-4d74-9461-204d26b972da/vzj220130-fig-0005-m.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – A black-box automated approach to calibrate numerical simulations and optimize cover design: Application to a flow control layer constructed on an experimental waste rock pile - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 5. Measured (dashed lines) and calibrated (solid lines) water retention curves of the waste rock (blue), flow control layer (FCL) sand (green), and crushed anorthosite (red) in the experimental waste rock pile (Bréard Lanoix et al., 2020; Dubuc, 2018)</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/canada1water-phase-1-report</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-08-29</lastmod>
    <image:image>
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      <image:title>Aquanty Blog - Canada1Water - Research and Development Phase 1 Report - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/aquanty-selected-as-finalist-for-new-tech-award-for-machine-learning-based-streamflow-forecasting</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-12</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/70a92ed2-36d8-4120-bd5c-6b2376ba2c07/HSAI_icon_logo_rgb.png</image:loc>
      <image:title>Aquanty Blog - Aquanty Selected as Finalist for New Tech Award for Machine-Learning Based Streamflow Forecasting - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-august-2024</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-03-06</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-rapid-transport-from-the-surface-to-wells-in-fractured-rock-a-unique-infiltration-tracer-experiment</loc>
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    <priority>0.5</priority>
    <lastmod>2024-09-17</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Rapid transport from the surface to wells in fractured rock: A unique infiltration tracer experiment - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/697d5b59-5bcb-45e9-97a2-7adadee40301/research+highlight+rerender.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Rapid transport from the surface to wells in fractured rock: A unique infiltration tracer experiment - Make it stand out</image:title>
      <image:caption>Fig. 4. HydroGeoSphere domain (not to scale).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-hgsrt-physics-based-hydrologic-forecasting-powered-by-hydrogeosphere</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-08-21</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-groundwater-recharge-from-overbank-floods</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Groundwater recharge from overbank floods - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/d26f18a0-cf12-4452-a697-1fd9ccf515c0/wrcr13519-fig-0002.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Groundwater recharge from overbank floods - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 2. Aquifer cross section used in this study (z dimension exaggerated). Clogging layers over the river and floodplain are denoted by dark gray and light gray shading, respectively.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/6ad69979-eaf0-4c51-a855-d55bc59187f1/wrcr13519-fig-0008.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Groundwater recharge from overbank floods - Fig. 10. Relative concentration distributions (C/C0) at 4, 12, 48, and 96 hr for all cases. (a–j) represent C/C0 profiles for Cases I, II-a, II-b, III-a, III-b, IV-a, IV-b, V-a, V-b, and VI. (k) Figure shows the C/C0 distributions based on the spatial distribution of true K field. Influent and effluent ports in each subplot are denoted with downward and upward-pointing triangles, respectively. Contours with C/C0 under 0.1 are removed for clarity</image:title>
      <image:caption>Fig. 8. Modeled infiltration volume plotted against the infiltration volume calculated from the relationship developed in this paper.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-july-2024</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-07-05</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/evaluating-the-significance-of-wetland-representation-in-isotope-enabled-distributed-hydrologic-modeling-in-mesoscale-precambrian-shield-watersheds</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-07-04</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-impact-of-baseflow-on-fish-community-in-the-ungcheon-stream-korea</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-09-17</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Impact of Baseflow on Fish Community in the Ungcheon Stream, Korea - Make it stand out</image:title>
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    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/e8232294-a910-49bb-b4c6-a9f47e54f014/research+highlight+h.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Impact of Baseflow on Fish Community in the Ungcheon Stream, Korea - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 1. The study area.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/325d682b-0f67-4e39-9db0-b857b8a08b06/research+highlight+2.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Impact of Baseflow on Fish Community in the Ungcheon Stream, Korea - Fig. 10. Relative concentration distributions (C/C0) at 4, 12, 48, and 96 hr for all cases. (a–j) represent C/C0 profiles for Cases I, II-a, II-b, III-a, III-b, IV-a, IV-b, V-a, V-b, and VI. (k) Figure shows the C/C0 distributions based on the spatial distribution of true K field. Influent and effluent ports in each subplot are denoted with downward and upward-pointing triangles, respectively. Contours with C/C0 under 0.1 are removed for clarity</image:title>
      <image:caption>Fig. 4. Distributions of water surface elevation and velocity; (a) Longitudinal distribution of the cross section-averaged water surface elevation, (b) Distribution of velocity.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-hgs-pdaf</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-06-24</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – HGS-PDAF (version 1.0): a modular data assimilation framework for an integrated surface and subsurface hydrological model - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/99a0d6e9-104f-4418-b181-0b1d76762770/hgs+pdaf.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – HGS-PDAF (version 1.0): a modular data assimilation framework for an integrated surface and subsurface hydrological model - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 2. Flowchart of the overall HGS-PDAF workflow.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/a5ff5ce9-4515-4bfe-8ac3-0e9a0b8aac90/gmd-17-3559-2024-f07-web.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – HGS-PDAF (version 1.0): a modular data assimilation framework for an integrated surface and subsurface hydrological model - Fig. 10. Relative concentration distributions (C/C0) at 4, 12, 48, and 96 hr for all cases. (a–j) represent C/C0 profiles for Cases I, II-a, II-b, III-a, III-b, IV-a, IV-b, V-a, V-b, and VI. (k) Figure shows the C/C0 distributions based on the spatial distribution of true K field. Influent and effluent ports in each subplot are denoted with downward and upward-pointing triangles, respectively. Contours with C/C0 under 0.1 are removed for clarity</image:title>
      <image:caption>Fig. 7. A synthetic experimental setup as an example case to illustrate the performance of HGS-PDAF. Three-dimensional view of the model domain and model boundary conditions. Contours represent the groundwater table depth below the surface. Locations of eight virtual observation wells are marked as stars. The location of the highly conductive paleochannel is indicated by a 500m/d iso-surface for hydraulic conductivity.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-june-2024</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-06-04</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-same-soil-different-climate-crop-model-intercomparison-on-translocated-lysimeters</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-06-04</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Same soil, different climate: Crop model intercomparison on translocated lysimeters - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/0f9fa55d-f6dd-41cb-a89b-99be4940f3df/vzj220202-fig-0001-m.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Same soil, different climate: Crop model intercomparison on translocated lysimeters - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 1. Map of selected TERENO (TERrestrial ENvironmental Observatories) SOILCan sites and associated hydrological watersheds in the northern part of Germany (adapted from Pütz et al., 2016) indicating the transfer routes of the soil monoliths from Dedelow (Dd) to Bad Lauchstädt (BL) and Selhausen (Se). The table in the left corner shows the differences (denoted as Δ) in climatic conditions for the hydrological years November 2014–October 2018 related to those at the Dedelow site as arrows (up = larger, down = smaller) for Δ annual global radiation (Rg), Δ mean annual rainfall (R), Δ mean annual grass reference evapotranspiration (ET0), Δ mean air temperature (Ta), and Δ mean daily wind speed (WS)</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/8b707dae-7827-4f5a-aa13-8c00b43159a6/vzj220202-fig-0004-m.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Same soil, different climate: Crop model intercomparison on translocated lysimeters - Fig. 10. Relative concentration distributions (C/C0) at 4, 12, 48, and 96 hr for all cases. (a–j) represent C/C0 profiles for Cases I, II-a, II-b, III-a, III-b, IV-a, IV-b, V-a, V-b, and VI. (k) Figure shows the C/C0 distributions based on the spatial distribution of true K field. Influent and effluent ports in each subplot are denoted with downward and upward-pointing triangles, respectively. Contours with C/C0 under 0.1 are removed for clarity</image:title>
      <image:caption>Fig. 4. Comparison of the model performance in terms of the normalized RMSE (nRMSE) for simulations of lysimeter data at the reference site Dedelow (i.e., model calibration) with those transferred to the locations Bad Lauchstädt (BL) and Selhausen (Se) for grain yield (GY), aboveground biomass (AgBio), leaf area index (LAI; no data at BL and Se), actual evapotranspiration (ETa), net drainage (NetQ) at 1.5-m soil depth, and average soil water content at 0-to-60-cm depth (SWC). The nRMSE for each site was averaged over the nRMSE values of the three profiles per model and site (MnRMSE). Models include AgroC (AC), Expert-N SPASS (SP), Expert-N SUCROS (SU), Expert-N CERES (CE), Expert-N GECROS (GE), HERMES (HE), MONICA (MO), THESEUS (TH), Theseus-HydroGeoSphere (HG), DailyDayCent (DC), Daisy (DY), and the multi-model mean (MM)</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-small-scale-topography-explains-patterns-and-dynamics</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-05-29</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Small-scale topography explains patterns and dynamics of dissolved organic carbon exports from the riparian zone of a temperate, forested catchment - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8638e9b-75a0-446e-853c-52e41a9d4743/hess-25-6067-2021-f02-thumb.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Small-scale topography explains patterns and dynamics of dissolved organic carbon exports from the riparian zone of a temperate, forested catchment - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 2. The boundary conditions of the study site (indicated by polygon A–D). Qup: groundwater influx (const.), : channel influx (dynamic), Qdown: groundwater leaving the model site (dynamic), and : surface water leaving the model site through channel outlet and through CD (dynamic), Qleft and Qright: groundwater rechargerate from side boundaries (const.). Red arrows indicate flow direction of the water. The 25 white points indicate wells which were used for model calibration. Labels of the piezometer run from a to e (lines) and 1 to 5 (columns).</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/4b919537-cba3-4ac8-8c2f-66e2f1ccc10e/hess-25-6067-2021-avatar-web.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Small-scale topography explains patterns and dynamics of dissolved organic carbon exports from the riparian zone of a temperate, forested catchment - Fig. 10. Relative concentration distributions (C/C0) at 4, 12, 48, and 96 hr for all cases. (a–j) represent C/C0 profiles for Cases I, II-a, II-b, III-a, III-b, IV-a, IV-b, V-a, V-b, and VI. (k) Figure shows the C/C0 distributions based on the spatial distribution of true K field. Influent and effluent ports in each subplot are denoted with downward and upward-pointing triangles, respectively. Contours with C/C0 under 0.1 are removed for clarity</image:title>
      <image:caption>Fig. 5. High-resolution TWI (TWIHR) map of the modeled site (excluding hillslopes). White points indicate sampling locations; the Rappbode stream is indicated by the blue line. Black polygons are high-TWIHR zones, indicating DOCI source areas.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-hydraulic-tomography-estimates-improved</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-05-23</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Hydraulic Tomography Estimates Improved by Zonal Information From the Clustering of Geophysical Survey Data - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/796caa0f-9f36-4bf2-a78a-78bb08a20e69/Figure+6-updated.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Hydraulic Tomography Estimates Improved by Zonal Information From the Clustering of Geophysical Survey Data - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 6. Spatial distribution of K tomograms for different cases. Geostatistical inversions are initialized with: (a) Case I: homogeneous K field; zonation models from (b) Case II-a: clustering of EC; (c) Case II-b: clustering of EC and GR; (d) Case III-a: spatially constrained clustering of EC; (e) Case III-b: spatially constrained clustering of EC and GR; (f) Case IV-a: clustering of EC, and improved with local K measurements; (g) Case IV-b: clustering of EC and GR, and improved with local K measurements; (h) Case V-a: spatially constrained clustering of EC, and improved with local K measurements; (i) Case V-b: spatially constrained clustering of EC and GR, and improved with local K measurements; (j) Case VI: true layer structure. (k) Figure shows the true K field for comparison.</image:caption>
    </image:image>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1d065fb8-f924-4b46-aa57-9ecdb7c25ad0/Figure+10-+updated.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Hydraulic Tomography Estimates Improved by Zonal Information From the Clustering of Geophysical Survey Data - Fig. 10. Relative concentration distributions (C/C0) at 4, 12, 48, and 96 hr for all cases. (a–j) represent C/C0 profiles for Cases I, II-a, II-b, III-a, III-b, IV-a, IV-b, V-a, V-b, and VI. (k) Figure shows the C/C0 distributions based on the spatial distribution of true K field. Influent and effluent ports in each subplot are denoted with downward and upward-pointing triangles, respectively. Contours with C/C0 under 0.1 are removed for clarity</image:title>
      <image:caption>Fig. 10. Relative concentration distributions (C/C0) at 4, 12, 48, and 96 hr for all cases. (a–j) represent C/C0 profiles for Cases I, II-a, II-b, III-a, III-b, IV-a, IV-b, V-a, V-b, and VI. (k) Figure shows the C/C0 distributions based on the spatial distribution of true K field. Influent and effluent ports in each subplot are denoted with downward and upward-pointing triangles, respectively. Contours with C/C0 under 0.1 are removed for clarity</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-heat-tracing-in-a-fractured-aquifer</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-05-07</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Heat Tracing in a Fractured Aquifer with Injection of Hot and Cold Water - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1140f5e3-1983-479e-af2b-d84445584e79/Capture.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Heat Tracing in a Fractured Aquifer with Injection of Hot and Cold Water - Fig 1. Test site location and experimental set-up. (a) Location of the Environmental Hydrogeological Park (EHP) site in India. (b) Water heating system providing hot water for the injection fluid (50 °C). (c) Water ice blocks melting in the reservoir during preparation of the cold injection fluid (10 °C). (d) Water ice blocks prior to the experiment. (e) View of the injection (CH03) and the pumping (CH12) wells and the 1000 L reservoir exemplary for hot water injection (covergent test). (f) Push–pull experiment setup in well CH03. (g) Convergent experiment setup with injection in CH03 and recovery in CH12. The unit m bgs means “meters below ground surface.” The experimental design in (f) and (g) is comparable to the setup used by Guihéneuf et al. (2017).</image:title>
      <image:caption>Fig. 7. Explanation of the model discretization. (a) The mesh with the refinement sections. (b) Schematic cross-section of the vertical plane at the position y = 50 m of the 3D numerical model. Note, “m bgs” stands for meters below ground surface. A discretely fractured porous media is modeled with HydroGeoSphere.</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Heat Tracing in a Fractured Aquifer with Injection of Hot and Cold Water - Make it stand out</image:title>
      <image:caption>Fig. 9. Simulated temperature distributions as differences corresponding to the hot (50 °C) and cold (10 °C) water tracer experiments performed in April 2019, at the end of the injection period. Zoom in the vertical plane for (a) the hot water and (b) the cold water injections. The extensions of the impacted areas are similar.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-machine-learning-flood-drought-forecasting</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-06-19</lastmod>
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      <image:title>Aquanty Blog - "HydroSphereAI: Machine Learning for Flood and Drought Forecasting" - Aquanty Webinar - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/46f04879-3338-4ceb-a4c6-08c8c4b02c09/updated+thumbnail.JPG</image:loc>
      <image:title>Aquanty Blog - "HydroSphereAI: Machine Learning for Flood and Drought Forecasting" - Aquanty Webinar - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-using-high-resolution-data-to-test-parameter-sensitivity</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-04-18</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Using High-Resolution Data to Test Parameter Sensitivity of the Distributed Hydrological Model HydroGeoSphere - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1712079443400-64NJ0QCFJL73GE5VG0FS/water-08-00202-ag-550.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Using High-Resolution Data to Test Parameter Sensitivity of the Distributed Hydrological Model HydroGeoSphere - Make it stand out</image:title>
      <image:caption>Graphical Abstract showing simulated vs observed evapotranspiration (ET) rates (top) and sensitivity of the simulated ET rates to changes in land use, potential ET rates and precipitation (bottom)</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/e7a5a0c1-8594-44ba-94b9-307d033450fb/water-08-00202-g001.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Using High-Resolution Data to Test Parameter Sensitivity of the Distributed Hydrological Model HydroGeoSphere - Fig 1. Location of the Erkensruhr catchment and climate stations (A); land use (B) and soil type distribution in the Erkensruhr catchment (C). The bottom map also illustrates the border between the slope of the hill and the riparian area (refer to Chapter 2.3).</image:title>
      <image:caption>Fig. 1. Location of the Erkensruhr catchment and climate stations (A); land use (B) and soil type distribution in the Erkensruhr catchment (C). The bottom map also illustrates the border between the slope of the hill and the riparian area (refer to Chapter 2.3).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-groundwaters-in-northeastern-pennsylvania</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-04-16</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Groundwaters in Northeastern Pennsylvania near intense hydraulic fracturing activities exhibit few organic chemical impacts - Make it stand out</image:title>
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    <image:image>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Groundwaters in Northeastern Pennsylvania near intense hydraulic fracturing activities exhibit few organic chemical impacts - Make it stand out</image:title>
      <image:caption>Fig. 5. Contaminant transport length-scales are short relative to the distance to nearest oil and gas well over the timescale of unconventional oil and gas well development in Northeastern PA. (A) Gas well drilling age and distance to nearest groundwater well (blue circles) are shown alongside transport distance as a function of time considering a distribution of hydrological conditions in southeastern sub-region of Bradford county, PA and two representative end-members: acrylamide (red, log Koc = 0.55) and bis-2-ethylhexyl phthalate (black/gray, log Koc = 4.99, where Koc is in L kgoc−1). The solid, dashed, dotted, and shaded regions refer groundwater transport velocities that bound the distribution of the results. B (acrylamide) and C (bis-2-ethylhexyl phthalate) illustrate geospatially specific transport distances about 30 gas well pads (gray circles) near 8 groundwater wells (black stars) in southeastern Bradford County after 10 years.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-april-2024</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-04-08</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-how-does-topography-control-topography-driven-groundwater-flow</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – How Does Topography Control Topography-Driven Groundwater Flow? - Make it stand out</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/35a677a8-b724-455a-b86b-b77bad391e97/figure+1.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – How Does Topography Control Topography-Driven Groundwater Flow? - Make it stand out</image:title>
      <image:caption>Fig. 1. The average flow patterns of Cases 1–7. Darcy velocity magnitude Log(V) (|V|, m/day) contours (in color bands).</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – How Does Topography Control Topography-Driven Groundwater Flow? - Make it stand out</image:title>
      <image:caption>Fig. 2. The trajectories of the five internal stagnation points. SZ means stagnant zone and A1 to A5 represent their corresponding area of Case 1.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-comparing-alternative-conceptual-models-tile-drains-and-soil-heterogeneity</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Comparing alternative conceptual models for tile drains and soil heterogeneity for the simulation of tile drainage in agricultural catchments - Make it stand out</image:title>
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    <image:image>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Comparing alternative conceptual models for tile drains and soil heterogeneity for the simulation of tile drainage in agricultural catchments - Make it stand out</image:title>
      <image:caption>Fig. 1. Location of (a) the Fensholt catchment in Denmark, (b) the Fensholt catchment showing land use, tile drains, drainage areas and the drainage discharge measurement stations (D1 to D8), and (c) the topography (1.6 m digital elevation model), piezometers, subcatchments delineated for investigation of stream discharge with the correspondent outlet stations (S1, S2, S3 and S4) and gauging stations at the outlet and in the center of the catchment (S2).</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Comparing alternative conceptual models for tile drains and soil heterogeneity for the simulation of tile drainage in agricultural catchments - Make it stand out</image:title>
      <image:caption>Fig. 4. Location of seepage nodes for the (a) Benchmark, (b) Main Drain, and (c) Distributed Models. The seepage nodes act as sinks extracting water from the subsurface and returning it to the surface at the drainage outlet (linked nodes). The drainage outlets D1 to D8 are labeled in the Figures.</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/76d5021c-c9d1-4caf-b2f3-35040dd9532c/Capture3.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Comparing alternative conceptual models for tile drains and soil heterogeneity for the simulation of tile drainage in agricultural catchments - Make it stand out</image:title>
      <image:caption>Fig. 9. Simulated and observed cumulative volumes during the 2014–2015 period at the drainage outlet stations D1 to D8 (red dots), stream stations S1 to S4 and the outlet (black dots).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/using-machine-learning-to-make-flood-forecasts-less-wishy-washy</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/caa8594e-0bc5-44b8-8f7c-9d29c819ba92/Landscape+3.png</image:loc>
      <image:title>Aquanty Blog - Ontario Water Consortium - WIG Project Highlight: Using machine learning to make flood forecasts less wishy-washy - Make it stand out</image:title>
      <image:caption>An AI-produced visual displaying a 3D river model accompanied by a flood forecasting system powered by machine learning algorithms.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-effects-of-connected-heterogeneity-physical-barrier-and-surge-frequency</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – The coastal aquifer recovery subject to storm surge: Effects of connected heterogeneity, physical barrier and surge frequency - Make it stand out</image:title>
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    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-fractal-behaviors-hydraulic-head</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Fractal Behaviors of Hydraulic Head and Surface Runoff of the Nested Groundwater Flow Systems in Response to Rainfall Fluctuations - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/3ec4ec1f-e2d5-4076-bca6-5447ca9a9b06/figure+1.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Fractal Behaviors of Hydraulic Head and Surface Runoff of the Nested Groundwater Flow Systems in Response to Rainfall Fluctuations - Make it stand out</image:title>
      <image:caption>Fig. 1. (a and b) A conceptual model for the problem. The green dashed lines in Figure 1b indicate 4 monitoring profiles. (c) Rainfall fluctuation and its spectral; (d) Fluctuations of hydraulic head in different depth (at x/L = 0.1) and their spectral of the Case 1.</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Fractal Behaviors of Hydraulic Head and Surface Runoff of the Nested Groundwater Flow Systems in Response to Rainfall Fluctuations - Make it stand out</image:title>
      <image:caption>Fig 2. (a–d) Seasonal changes of the flow patterns of Case 1 in response to rainfall fluctuations. Panels (e and f) are the insets of (a) and (d), respectively. Darcy velocity magnitude Log(V) (|V|, m/day) contours (in color bands), streamlines (black solid lines), velocity direction (black arrows with uniform length), and transient SP (in yellow circle).</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-march-2024</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-04-08</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-introducing-the-hydrogeosphere-interface</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-04-08</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/486efb2b-6b59-4832-9887-13bea3e1cc64/thumb2.JPG</image:loc>
      <image:title>Aquanty Blog - Introducing the HydroGeoSphere Interface - Aquanty Webinar - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-saltwater-intrusion-into-confined-island-aquifer-driven-by-erosion</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-04-08</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Saltwater Intrusion Into a Confined Island Aquifer Driven by Erosion, Changing Recharge, Sea-Level Rise, and Coastal Flooding - Make it stand out</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/eb507f0d-11aa-4e0d-b36f-61df864ca219/figure+1.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Saltwater Intrusion Into a Confined Island Aquifer Driven by Erosion, Changing Recharge, Sea-Level Rise, and Coastal Flooding - Make it stand out</image:title>
      <image:caption>Fig. 1: Maps of study site: (a) Prince Edward Island (PEI), Canada, with the location of Lennox Island noted by black dot; (b) Lennox Island and nearby barrier island Hog Island in Malpeque Bay.</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Saltwater Intrusion Into a Confined Island Aquifer Driven by Erosion, Changing Recharge, Sea-Level Rise, and Coastal Flooding - Make it stand out</image:title>
      <image:caption>Fig. 2: (a) Conceptual diagram of the chosen cross-section on Lennox Island (see transect A-Aʹ on Figure 1b) with a representation of climate change perturbations (changing recharge or P-ET, storm surge flooding, erosion, and sea-level rise). (b) HydroGeoSphere two-dimensional model domain and mesh with boundary conditions. The island domain dimensions changed for the erosion scenarios.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-feb-2024</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-04-08</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-paper-wrr-editors-choice-award</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-04-08</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/31d749a7-ff2a-4399-a7b7-20762fdf52e7/Capture2.PNG</image:loc>
      <image:title>Aquanty Blog - HydroGeoSphere Research Paper wins Water Resources Research Editors’ Choice Award - Make it stand out</image:title>
      <image:caption>Figure 1: The study site with two adjacent headwater catchments in the western Swiss Alps (the Vallon de Nant and the Vallon de La Vare) and associated model mesh (23 layers, ~272,000 nodes).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-simulating-recession-dynamics-arctic-catchments-thawing-permafrost</loc>
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    <priority>0.5</priority>
    <lastmod>2026-01-05</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Simulating the recession dynamics of Arctic catchments in the context of a thawing permafrost - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-jan-2024</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-04-08</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-understanding-vulnerability-surfacegroundwater-interactions-climate-change</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-04-08</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Understanding the vulnerability of surface–groundwater interactions to climate change: insights from a Bavarian Forest headwater catchment - Make it stand out</image:title>
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    <image:image>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Understanding the vulnerability of surface–groundwater interactions to climate change: insights from a Bavarian Forest headwater catchment - Make it stand out</image:title>
      <image:caption>Fig. 1&amp;2: Topographical map and location of the Grosse Ohe catchment and its sub-catchment Hinterer Schachtenbach, along with the downstream river network (above). Model discretization of the (A) Grosse Ohe catchment and (B) the sub-catchment Hinterer Schachtenbach (below).</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Understanding the vulnerability of surface–groundwater interactions to climate change: insights from a Bavarian Forest headwater catchment - Make it stand out</image:title>
      <image:caption>Fig. 7: Projected surface water depths for the stream during baseflow conditions in late summer. Water depths were estimated for September 15th for all RCP ensembles and the reference period, and the blue line represents the mean water depth for the reference period (1992–2018). The grey shaded area indicates the range of variation in water depths for the different RCP scenarios</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-using-wetlands-to-flatten-hydrograph</loc>
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    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/5002893c-6806-4f62-8221-e75fbbd72357/banner.JPG</image:loc>
      <image:title>Aquanty Blog - "Using Wetlands to Flatten the Hydrograph" - Webinar - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/manitoba-cooperator-field-level-water-forecasts-theres-an-app-for-that</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/c2ed60c3-5d12-4543-af4a-8c8d18df3d9e/Capture.JPG</image:loc>
      <image:title>Aquanty Blog - Manitoba Cooperator - Field-level water forecasts: There’s an app for that - Make it stand out</image:title>
      <image:caption>A 3D model of the Assiniboine River Basin created for the first phase of the Manitoba Forage and Grassland Association Aquanty project. Photo: Manitoba Forage and Grassland Association/Aquanty Inc.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-playing-to-strengths-of-hydrogeosphere</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-04-08</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/39d389d3-f87f-4c13-a857-5fc78d8d9cbe/banner.JPG</image:loc>
      <image:title>Aquanty Blog - "Playing to the Strengths of HydroGeoSphere: Unleashing Digital Twins for Integrated Hydrologic Modelling" - Aquanty Webinar - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/mfga-aquanty-featured-in-national-post-agricultural-innovation-campaign</loc>
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    <priority>0.5</priority>
    <lastmod>2024-04-08</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/d51c73f1-30ea-4bc0-8e78-3cec390612b0/Mediaplanet_Agricultural+Innovation_screenshot.png</image:loc>
      <image:title>Aquanty Blog - MFGA Aquanty Forecasting Tool featured in the National Post - "How a High-Tech Water Model is Future-Proofing Manitoba’s Farms, Soils and Grasslands" - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tecplot-360-guest-blog-using-tecplot-to-unleash-the-power-of-hydrogeosphere-integrated-hydrologic-modelling</loc>
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    <priority>0.5</priority>
    <lastmod>2025-08-12</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/d5202360-c4bf-408c-b1d1-a700b4ddf24b/tecplot+guest+blog.JPG</image:loc>
      <image:title>Aquanty Blog - Tecplot 360 Guest Blog: Using Tecplot to Unleash the Power of HydroGeoSphere Integrated Hydrologic Modelling - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-dec-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-04-08</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/mfga-aquanty-forecast-tool-grasslander-fall-2023</loc>
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    <priority>0.5</priority>
    <lastmod>2024-04-08</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/40035d12-4931-43b2-a398-fa5da69d15b7/Capture.JPG</image:loc>
      <image:title>Aquanty Blog - MFGA-Aquanty Forecast Tool - Grasslander Fall 2023 - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f4e0e1f9-a59b-40be-9b7d-03af747547a3/Capture1.JPG</image:loc>
      <image:title>Aquanty Blog - MFGA-Aquanty Forecast Tool - Grasslander Fall 2023 - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/eea34dc3-c09a-497c-873e-69127a22cacf/Capture2%5D.JPG</image:loc>
      <image:title>Aquanty Blog - MFGA-Aquanty Forecast Tool - Grasslander Fall 2023 - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-mega-tidal-and-surface-flooding-controls-on-coastal-groundwater-saltwater-intrusion</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-04-08</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Mega-Tidal and Surface Flooding Controls on Coastal Groundwater and Saltwater Intrusion Within Agricultural Dikelands - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/5a9338c0-dea9-4a08-b72a-5100f647d224/wrcr26912-fig-0005-m.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Mega-Tidal and Surface Flooding Controls on Coastal Groundwater and Saltwater Intrusion Within Agricultural Dikelands - Make it stand out</image:title>
      <image:caption>Fig. 5: HydroGeoSphere model calibration results (run 3, Table 1). (a) Pressure head distribution, (b) salt concentration (normalized to seawater) distribution and wedge location limit based on monitoring well electrical conductivity, and (c) the simulated and observed monitoring well groundwater levels (Figure 2c). Model domain is vertically exaggerated to visualize changes.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-nov-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-simulating-seasonal-variations-tile-drainage-discharge-agricultural-catchment</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-12</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Simulating seasonal variations of tile drainage discharge in an agricultural catchment - Make it stand out</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/ccae88d9-e9e6-4b67-b66f-1c0ee6e73f4e/figure+1.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Simulating seasonal variations of tile drainage discharge in an agricultural catchment - Make it stand out</image:title>
      <image:caption>Fig. 1: Location of (a) the Norsminde catchment in Denmark (55°58′N, 10°08′E), (b) the Fensholt catchment within the Norsminde catchment, (c) a zoom-in on the Fensholt catchment showing topography (1.6 m digital elevation model), mapped drainage networks, drainage discharge measurement stations (StA and StB) with their respective drainage areas (AreaA and AreaB) and stream discharge station on the Stampemølle Bæk stream at the outlet of the catchment (SD). Eight observation piezometers are located in the two drainage areas (Pz1–Pz4 in AreaA and Pz5–Pz8 in AreaB).</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/03a707eb-0fb9-4a95-bca3-b7d238b3bb2d/figure+2.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Simulating seasonal variations of tile drainage discharge in an agricultural catchment - Make it stand out</image:title>
      <image:caption>Fig. 2: 2-D mesh with refined nodes highlighted for both drainage areas, streams and topography areas where the surface slope is greater than 9%.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/c6d05420-fb8f-4ece-9d57-295c4e967d8f/figure+3.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Simulating seasonal variations of tile drainage discharge in an agricultural catchment - Make it stand out</image:title>
      <image:caption>Fig. 3: (a) Geological units in the heterogeneous stochastic best model, (b) vertical cross section through the model, and (c) a zoom on this section in the zone where drainage areas of interest are located. Top soil units cover the entire catchment from ground surface to 3 m deep. From 3 to 20 m deep (bottom of the model), units from a geological model created by He et al. [2014] are displayed. The vertical exaggeration for all figures is 10X.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/151ae3b6-1502-4310-ad9c-39a11eb72671/figure+7.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Simulating seasonal variations of tile drainage discharge in an agricultural catchment - Make it stand out</image:title>
      <image:caption>Fig. 7: At the top, the topography is displayed in Fensholt and in the drainage areas of interest. (a, b) Pressure head distribution along vertical cross sections in AreaA is shown for the HeSB model (0.0–3.0 m depth, vertical exaggeration = 10) in May 2013. (c, d) Depth to water table is also shown for both AreaA and AreaB. Targeted output times were selected before a drainage peak (Figures 7a and 7c, 21 May 2013) and at maximum peak flow (Figures 7b and 7d, 23 May 2013).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-oct-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-data-space-inversion</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-12</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/e8bac828-ae9f-4fd7-9287-7a9533b6ab3c/title+slide.JPG</image:loc>
      <image:title>Aquanty Blog - HydroGeoSphere Research Highlight - "Data Space Inversion" - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-groundwater-flow-reversal-between-small-water-bodies-adjoining-aquifers</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-12</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Groundwater flow reversal between small water bodies and their adjoining aquifers: A numerical experiment - Make it stand out</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/4d4dac42-37f7-4ed9-baa0-f5017aa3fc56/hyp14890-fig-0002-m.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Groundwater flow reversal between small water bodies and their adjoining aquifers: A numerical experiment - Make it stand out</image:title>
      <image:caption>Fig. 2. Cross section along the vertical plane showing the model domain dimensions of the kettle hole between the adjacent overlying (upstream) and underlying (downstream) kettle holes with sediment layers, boundary conditions and model internal observation wells (A, B see Figure 1). Note different scaling of the x- and y-axes.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/50358fbb-33a8-443a-affd-3a272614cb16/hyp14890-fig-0008-m.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Groundwater flow reversal between small water bodies and their adjoining aquifers: A numerical experiment - Make it stand out</image:title>
      <image:caption>Fig. 8. Spatial distribution of the kettle hole water in the down-gradient aquifer at two different points in time and for the three selected model variants ddsS, ddsL and ddsU.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/cfe349be-cb17-4c6e-8eca-953e0835c839/hyp14890-fig-0005-m.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Groundwater flow reversal between small water bodies and their adjoining aquifers: A numerical experiment - Make it stand out</image:title>
      <image:caption>Fig. 5. Water level fluctuation within the kettle hole (middle) and in the up- and down-gradient fringe (left, right) for all model variants (box plots) in comparison to the bathymetry of the kettle hole (dashed lines).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-evaluation-hydraulic-conductivity-estimates-various-approaches-groundwater-flow-models</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-27</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluation of Hydraulic Conductivity Estimates from Various Approaches with Groundwater Flow Models - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/bc27aa1f-c35c-4578-9369-7e213cf44690/gwat13348-fig-0002-m.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluation of Hydraulic Conductivity Estimates from Various Approaches with Groundwater Flow Models - Make it stand out</image:title>
      <image:caption>Fig. 2. Cross-sectional view of the 19-layer geological zonation model with CMT and PW screened intervals shown in cross sections C-C′ and D-D′. Cross sections along A-A′ and B-B′ are available in Figure S1. The 19 layers represent 7 different material types as indicated in the stratigraphic index. The 7 material types were obtained through examination of cores from 18 boreholes at the site. Specifically, the 19 layers indicated on cross sections C-C′ and D-D′ are clay (1, 4, 8, 12, 16, 18), silt and clay (17, 19), silt (2, 7, 10, 14), sandy silt (6, 9, 13), silt and sand (5), sand (3, 11), and sand and gravel (15). On cross sections C-C′ and D-D′, layer numbers are italicized and numbers along PW and CMT wells indicate port numbers (e.g., PW1-1, PW1-2, and so on).</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/5f715c22-cc41-48ae-8c3b-fcfa6219f525/gwat13348-fig-0006-m.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluation of Hydraulic Conductivity Estimates from Various Approaches with Groundwater Flow Models - Make it stand out</image:title>
      <image:caption>Fig. 6. K distributions at the NCRS from various site characterization approaches. CMT and PW well locations (red lines) along with their screened intervals (black color) as well as HPT survey locations (dashed pink lines) are shown on each subfigure.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/322b4966-53cb-49f0-ba06-095430ad4044/gwat13348-fig-0007-m.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluation of Hydraulic Conductivity Estimates from Various Approaches with Groundwater Flow Models - Make it stand out</image:title>
      <image:caption>Fig. 7. Scatterplots of observed versus simulated drawdowns from various K characterization approaches for model validation under steady state conditions.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/6b16d1ec-322a-495b-8bc9-63d215f48e6e/gwat13348-fig-0008-m.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluation of Hydraulic Conductivity Estimates from Various Approaches with Groundwater Flow Models - Make it stand out</image:title>
      <image:caption>Fig 8. Scatterplots of observed versus simulated drawdowns from various K characterization approaches for model validation under transient conditions.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-lateral-vertical-saltwater-intrusion-coastal-aquifer</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-27</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/218d37e0-9a74-4f9c-872c-8114dd5d4a06/thumbnail.JPG</image:loc>
      <image:title>Aquanty Blog - HydroGeoSphere Research Highlight - "Lateral and vertical saltwater intrusion into a coastal aquifer" - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-sep-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-visualizing-hydrogeosphere-output-tecplot</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-27</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/381b9a43-8cec-456e-a5e5-ea78c5df1bb6/content.JPG</image:loc>
      <image:title>Aquanty Blog - "Visualizing HydroGeoSphere Output with Tecplot 360" - Aquanty Webinar - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/blog/webinar-convergence-optimization</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-27</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/2f0bb7e2-b4ae-40fd-a98e-ec80b17bb656/outline.JPG</image:loc>
      <image:title>Aquanty Blog - "Model Convergence and Optimizing Runtimes with HydroGeoSphere" - Aquanty Webinar - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-aug-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-managing-climate-change-impacts-western-mountain-aquifer</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Managing climate change impacts on the Western Mountain Aquifer: Implications for Mediterranean karst groundwater resources - Make it stand out</image:title>
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    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/5e147c97-7204-48a1-a531-0847b2d9f29c/fig1.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Managing climate change impacts on the Western Mountain Aquifer: Implications for Mediterranean karst groundwater resources - Make it stand out</image:title>
      <image:caption>Fig. 1. Location and extent of the Western Mountain Aquifer (WMA) and the adjacent Eastern Mountain Aquifer (EMA) catchment (Digital elevation data obtained from the data set SRTM 1 Arc-Second Global). The red line wells serve for the aquifer management, representing the northern, central and southern part of the aquifer (Amir and Livshitz, 2023).</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f04e5fa8-2225-436b-9089-1bee8743da6f/fig9.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Managing climate change impacts on the Western Mountain Aquifer: Implications for Mediterranean karst groundwater resources - Make it stand out</image:title>
      <image:caption>Fig. 9. The average annual recharge depth change until 2041-2070 compared to the reference period 1981-2010. Spatial reference is provided in Fig. 1.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/3229b39c-1e77-436a-b378-8ae9f6294947/fig10.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Managing climate change impacts on the Western Mountain Aquifer: Implications for Mediterranean karst groundwater resources - Make it stand out</image:title>
      <image:caption>Fig. 10. Impact of the IPCC RCP4.5 climate change scenario and the RNC, B, and RRI groundwater demand scenarios on (a) spring discharge at the Taninim spring and the hydraulic head in the (b) northern, (c) central, and (d) southern coastal plain. The RRI simulation was discontinued in 2042 due to dry pumping wells.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/comparative-valuation-three-ecosystem-services-canadian-watershed</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1666190353301-8DLKO6YX6A24TD58Z8X6/staff+research.PNG</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Comparative Valuation of Three Ecosystem Services in a Canadian Watershed Using Global, Regional, and Local Unit Values - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/b1deb02c-a313-4c30-8f14-d5de951ed88f/aziz_fig1.JPG</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Comparative Valuation of Three Ecosystem Services in a Canadian Watershed Using Global, Regional, and Local Unit Values - Make it stand out</image:title>
      <image:caption>Figure 1. Land cover in the Grand River watershed, Ontario, Canada (data taken from the Grand River Conservation Authority, or GRCA, website: https://data.grandriver.ca/downloads-geospatial.html. Accessed on 4 May 2020).</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/39a1c148-74b1-47fc-aeca-3741755eab0f/aziz_fig2.JPG</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Comparative Valuation of Three Ecosystem Services in a Canadian Watershed Using Global, Regional, and Local Unit Values - Make it stand out</image:title>
      <image:caption>Figure 2. Total value of three ecosystem services in the Grand River watershed based on three datasets (i.e., local, regional, and global) (see Section 2.3 for details on datasets). Error bars show standard deviations. All values are in CAD 2017.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-effect-topographic-slope-export-nitrate-humid-catchments</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-27</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Effect of topographic slope on the export of nitrate in humid catchments: a 3D model study - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/0a984982-9274-4912-b90e-7a24cbf99a38/figure1.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Effect of topographic slope on the export of nitrate in humid catchments: a 3D model study - Make it stand out</image:title>
      <image:caption>Figure 1: (a) Imagery of the catchment “Schäfertal”, (b) synthetic catchments with slopes of 1:20, 1:40, and 1:1000, and (c) measured precipitation and estimate potential evapotranspiration for the representative year (2005)</image:caption>
    </image:image>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/2f1caa47-70b5-4659-81b5-73bb2806f3a3/figure+6.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Effect of topographic slope on the export of nitrate in humid catchments: a 3D model study - Make it stand out</image:title>
      <image:caption>Figure 6: The simulated (a) Q and ET, (b) spatially-averaged depth of groundwater table from the land surface, and (c) young water fraction in streamflow and evapotranspiration in relation to the topographic slope for the simulated catchments. (d) temporal variations of young water fraction for a steep (1:20) and flat (1:1000) landscape.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/9832edd8-0d69-42cb-af3d-38b6dcb68e3a/figure+7.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Effect of topographic slope on the export of nitrate in humid catchments: a 3D model study - Make it stand out</image:title>
      <image:caption>Figure 7: Cross-sectional view of saturation, flow paths and exchange fluxes between the surface and subsurface in the wet season (Feb) for catchments with topographic slope of (a) 1:20, and (b) 1:1000</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-july-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/steve-frey-joins-board-of-directors</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/cd91cf1b-873d-4334-9a29-b94d19310628/aquanty_hydrosphere%252Banalytics_2.jpg</image:loc>
      <image:title>Aquanty Blog - Aquanty Welcomes Dr. Steven Frey to its Board of Directors - Make it stand out</image:title>
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      <image:title>Aquanty Blog - Aquanty Welcomes Dr. Steven Frey to its Board of Directors - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-testing-high-resolution-numerical-models-contaminant-storage-release</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-27</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Testing high resolution numerical models for analysis of contaminant storage and release from low permeability zones - Make it stand out</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/db29f363-cf7f-41fb-8c35-618a3fc335b7/figure+1.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Testing high resolution numerical models for analysis of contaminant storage and release from low permeability zones - Make it stand out</image:title>
      <image:caption>Figure 1: (a) Sand tank for dual tracer study showing bentonite zones surrounded by lighter sand; and (b) assumed geometry of clay layers and grid discretization applied in HydroGeoSphere, with approximately 25,000 discrete elements.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/5ab5780b-0fab-4e56-830d-a36d8d0ecccc/figure+2.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Testing high resolution numerical models for analysis of contaminant storage and release from low permeability zones - Make it stand out</image:title>
      <image:caption>Figure 2: (a) Photos showing visual fluorescein distribution during the 22-day loading phase at days 5 and 15, and during the subsequent flushing phase at days 27 and 74 (5 and 52 days after termination of source input); and (b) simulated HydroGeoSphere contours at similar times as the experimental photos. Note that the simulated contours are plotted to C/Co=1e-3, which is below visual observation limits.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/98ca09bc-ec31-4cce-b117-de1b68af37a0/figure+3.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Testing high resolution numerical models for analysis of contaminant storage and release from low permeability zones - Make it stand out</image:title>
      <image:caption>Figure 3: Graph comparing experimental and simulated bromide and fluorescein tracer arrival and elution curves at the effluent end using HydroGeoSphere (normalized to average input concentrations).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-june-2023</loc>
    <changefreq>monthly</changefreq>
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    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-at-egu23</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HydroGeoSphere at the EGU23 General Assembly - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-disentangling-runoff-generation-mechanisms-combining-isotope-tracing-with-integrated-surface-subsurface-simulation</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Disentangling runoff generation mechanisms: Combining isotope tracing with integrated surface/subsurface simulation - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/11af3416-a12a-4ed8-97d0-86c9993d61b7/Capture-3.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Disentangling runoff generation mechanisms: Combining isotope tracing with integrated surface/subsurface simulation - Make it stand out</image:title>
      <image:caption>Chen, X., et al (2023)</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-evaluating-domestic-well-vulnerability-contamination-unconventional-oil-gas-development-sites</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluating Domestic Well Vulnerability to Contamination From Unconventional Oil and Gas Development Sites - Make it stand out</image:title>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluating Domestic Well Vulnerability to Contamination From Unconventional Oil and Gas Development Sites - Make it stand out</image:title>
      <image:caption>Soriano, M. A., et al (2020)</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-landscape-restoration-after-oil-sands-mining-conceptual-design-hydrological-modelling-fen-reconstruction</loc>
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    <lastmod>2025-08-15</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT –  Landscape restoration after oil sands mining: conceptual design and hydrological modelling for fen reconstruction - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-may-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-potential-influence-of-climate-change-ecosystems-within-boreal-plains-of-alberta</loc>
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    <lastmod>2025-08-15</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Potential influence of climate change on ecosystems within the Boreal Plains of Alberta - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-numerical-simulations-of-water-flow-and-contaminants-transport-near-mining-wastes-disposed-fractured-rock-mine</loc>
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    <lastmod>2025-08-15</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Numerical simulations of water flow and contaminants transport near mining wastes disposed in a fractured rock mass - Make it stand out</image:title>
      <image:caption>Farouk, B.A. et al (2015)</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-apr-2023</loc>
    <changefreq>monthly</changefreq>
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    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/accounting-impacts-of-renewable-energy-expansions-on-ecosystem-services-to-balance-the-trade-offs</loc>
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    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:title>Aquanty Blog - Staff Research Highlight - Accounting impacts of renewable energy expansions on ecosystem services to balance the trade-offs - Make it stand out</image:title>
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      <image:title>Aquanty Blog - Staff Research Highlight - Accounting impacts of renewable energy expansions on ecosystem services to balance the trade-offs - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/blog/webinar-climate-change-analysis-hydrogeosphere</loc>
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    <lastmod>2024-03-27</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-impacts-climate-change-different-crop-rotation-scenarios-groundwater-nitrate-concentrations-sandy-aquifer</loc>
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    <lastmod>2024-03-14</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Impacts of Climate Change and Different Crop Rotation Scenarios on Groundwater Nitrate Concentrations in a Sandy Aquifer - Make it stand out</image:title>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Impacts of Climate Change and Different Crop Rotation Scenarios on Groundwater Nitrate Concentrations in a Sandy Aquifer - Make it stand out</image:title>
      <image:caption>Figure 1. Norfolk site: model domain boundary, elevation map, and land use map for Norfolk site for 2012. Red symbols indicate the positions of the monitoring wells (MWs) used in this study.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/3d2ae2fe-c5f7-4b34-9455-142593c2ed90/Screenshot+2023-03-15+at+12.09.31+PM.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Impacts of Climate Change and Different Crop Rotation Scenarios on Groundwater Nitrate Concentrations in a Sandy Aquifer - Make it stand out</image:title>
      <image:caption>Figure 8. Groundwater elevation (masl) data for different climate change scenarios at (a) MW-04 and (b) MW-07 monitoring wells at the study site.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-evaluating-climate-change-impacts-soil-moisture-groundwater-resources-within-lake-affected-region</loc>
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    <lastmod>2025-08-15</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluating Climate Change Impacts on Soil Moisture and Groundwater Resources Within a Lake-Affected Region - Make it stand out</image:title>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluating Climate Change Impacts on Soil Moisture and Groundwater Resources Within a Lake-Affected Region - Make it stand out</image:title>
      <image:caption>Figure 1. (a) The general location of the Grand River Watershed within the Great Lakes Basin. (b) Topography, stream network, and groundwater observation wells. (c) Stratigraphic layers of the GRW model.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/60c9bce3-31f8-4e1b-a2ab-19586101ae18/Screenshot+2023-03-09+at+11.10.16+AM.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluating Climate Change Impacts on Soil Moisture and Groundwater Resources Within a Lake-Affected Region - Make it stand out</image:title>
      <image:caption>Figure 5. (top) Annual average depth to the groundwater table and (bottom) changes in the depth to the groundwater table.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f4ede214-06f5-4d7e-bd0f-7f5068a5ceef/Screenshot+2023-03-09+at+11.10.39+AM.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluating Climate Change Impacts on Soil Moisture and Groundwater Resources Within a Lake-Affected Region - Make it stand out</image:title>
      <image:caption>Figure 7. The average seasonal cycle of watershed-averaged depth to the groundwater table and relative soil saturation for the (left) WRF G ensemble and the (right) WRF T ensemble, (top) without and (bottom) with bias correction for the historical, midcentury, and end-century periods.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/16b242c1-1cc9-4b09-8fae-aece06e5f681/Screenshot+2023-03-09+at+11.10.57+AM.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluating Climate Change Impacts on Soil Moisture and Groundwater Resources Within a Lake-Affected Region - Make it stand out</image:title>
      <image:caption>Figure 8. (top) Relative soil saturation at 0.75-m depth and (bottom) changes in relative soil saturation. Values have been averaged over July, August, and September (JAS).</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/18eb1da1-1694-474d-b5b3-7ef502b8eef3/Screenshot+2023-03-09+at+11.11.16+AM.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluating Climate Change Impacts on Soil Moisture and Groundwater Resources Within a Lake-Affected Region - Make it stand out</image:title>
      <image:caption>Figure 10. (top) Annual average groundwater recharge (defined as infiltration minus evapotranspiration from porous media) and (bottom) changes therein at the end of the twenty-first century.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-mar-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-towards-climate-driven-simulation-of-coupled-surface-subsurface-hydrology-at-continental-scale</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Towards a climate-driven simulation of coupled surface-subsurface hydrology at the continental scale: a Canadian example - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/bd0ba5a8-46b5-474b-9bf2-7a8b36e3d7df/CCBM_Great+Lakes+Basin.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Towards a climate-driven simulation of coupled surface-subsurface hydrology at the continental scale: a Canadian example - Make it stand out</image:title>
      <image:caption>Figure 3. A close-up look at the 3D triangular prism grid along the Great Lakes region. Hot colours represent high elevations and cold colours show the low elevation. The irregular mesh resolution is refined at the lake shore and along major rivers. Source: Authors.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-fully-integrated-physically-based-approach-for-simulating-water-flows-large-scale-heavily-agricultural-low-instrumented-watershed</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Fully integrated and physically-based approach for simulating water flows in a large-scale, heavily agricultural and low-instrumented watershed - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/water-forecasting-platform-to-be-launched-pembina-river-valley</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/0a0f8692-d844-48c3-8f60-302534cf2510/aquanty+in+the+news.jpg</image:loc>
      <image:title>Aquanty Blog - Water Forecasting Platform Soon to be Launched for the Pembina River Valley - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/fee89222-397f-4c1f-96af-d53c12119bb8/Pembina.jpeg</image:loc>
      <image:title>Aquanty Blog - Water Forecasting Platform Soon to be Launched for the Pembina River Valley - Make it stand out</image:title>
      <image:caption>3D model of the Pembina River Valley, the foundation of the hydrologic forecasting platform.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-variably-saturated-dual-permeability-flow-modeling-western-mountain-aquifer-israel</loc>
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    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Variably saturated dual-permeability flow modeling to assess distributed infiltration and vadose storage dynamics of a karst aquifer - Make it stand out</image:title>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Variably saturated dual-permeability flow modeling to assess distributed infiltration and vadose storage dynamics of a karst aquifer - Make it stand out</image:title>
      <image:caption>Spatial discretization of the Western Mountain Aquifer and simulation results for 2016-09-15.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/8df823c6-e780-4ff5-8f0f-77637ff4a391/figure7.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Variably saturated dual-permeability flow modeling to assess distributed infiltration and vadose storage dynamics of a karst aquifer - Make it stand out</image:title>
      <image:caption>Spatial distribution of simulated saturation on 2016-09-15.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/aquanty-staff-research-saturated-hydraulic-conductivity-in-northern-peats-inferred-from-other-measurements-4k8j3</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-18</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/81ed74b8-eb90-455f-b432-2c8d85fca16e/physics+and+ecology+in+fluids.JPG</image:loc>
      <image:title>Aquanty Blog - Physics and Ecology in Fluids: Modeling and Numerical Experiments - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-feb-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-estimation-groundwater-contributions-athabasca-river</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Estimation of groundwater contributions to Athabasca River, Alberta, Canada - Make it stand out</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/4e538b0f-7187-4336-9fa5-c0ff6df9d1e2/conceptual+model.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Estimation of groundwater contributions to Athabasca River, Alberta, Canada - Make it stand out</image:title>
      <image:caption>Integrated surface-subsurface model for the Athabasca River Basin</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/113ee4cf-7a3c-4832-a32c-654f9e6b5899/exchange+flux.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Estimation of groundwater contributions to Athabasca River, Alberta, Canada - Make it stand out</image:title>
      <image:caption>Mean net exchange fluxes based on monthly transient simulations: a) average annual, b) low flow season (May to September), and c) high flow season (October to April).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-evaluating-backward-probability-model-under-various-conditions</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluating backward probability model under various hydrogeologic and hydrologic conditions - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/5d31a0d9-7ac4-4256-87a3-f015f1554a89/backward_probability_model.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluating backward probability model under various hydrogeologic and hydrologic conditions - Make it stand out</image:title>
      <image:caption>Evaluating backward probability model under various hydrogeologic and hydrologic conditions</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/software-sale-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-06-13</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/38577c57-2308-4a14-a39d-c701bcc323b3/sale_flyer.JPG</image:loc>
      <image:title>Aquanty Blog - Software Sale &amp;amp; Important Updates to HydroGeoSphere Pricing! - Make it stand out</image:title>
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    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-logjam-characteristics-drivers-transient-storage</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Logjam Characteristics as Drivers of Transient Storage in Headwater Streams - Make it stand out</image:title>
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    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/a09ea588-290a-4bb9-a6c9-f680f7f3012b/Capture.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Logjam Characteristics as Drivers of Transient Storage in Headwater Streams - Make it stand out</image:title>
      <image:caption>Figure 3: HydroGeoSphere simulated surface water depth (m) and groundwater mean age (log(hour)) for the 8 flume scenarios where the logjam permeability, number of logjams, and/or discharge change.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-jan-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/manitoba-cooperator-hydrology-forecasting-tool-drills-down-to-field-level</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/0a0f8692-d844-48c3-8f60-302534cf2510/aquanty+in+the+news.jpg</image:loc>
      <image:title>Aquanty Blog - Manitoba Co-operator - Hydrology forecasting tool drills down to field level - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/2eb8b0aa-61d9-4756-a368-f06e3dee44eb/manco1.JPG</image:loc>
      <image:title>Aquanty Blog - Manitoba Co-operator - Hydrology forecasting tool drills down to field level - Make it stand out</image:title>
      <image:caption>3D model of the Assiniboine River Basin created for Phase 1 of our project with the MFGA.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/da87be39-1aed-4835-b979-79cd86e4dff0/manco2.JPG</image:loc>
      <image:title>Aquanty Blog - Manitoba Co-operator - Hydrology forecasting tool drills down to field level - Make it stand out</image:title>
      <image:caption>Screenshot of the MFGA Aquanty Forecast Tool showing the 15 watershed regions throughout Manitoba, Saskatchewan &amp; North Dakota.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/terrestrial-protected-areas-understanding-spatial-variation-potential-realized-ecosystem-services</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/79562e3f-ba4e-4583-8008-f2934535f186/TAziz+graphical+abstract.JPG</image:loc>
      <image:title>Aquanty Blog - Staff Research Highlight - Terrestrial protected areas: Understanding the spatial variation of potential and realized ecosystem services - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-coastal-topography-hydrogeology-control-critical-groundwater-gradients</loc>
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    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Coastal Topography and Hydrogeology Control Critical Groundwater Gradients and Potential Beach Surface Instability During Storm Surges - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/a02fcf15-8d83-4a64-85b4-3463c96689a5/Capture1.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Coastal Topography and Hydrogeology Control Critical Groundwater Gradients and Potential Beach Surface Instability During Storm Surges - Make it stand out</image:title>
      <image:caption>Figure 1: HGS model domain, boundary conditions (red and blue boxes), and the surge height evolution curve (inset). The blue curve is the terrestrial freshwater recharge boundary, the red rectangle is where a fixed seawater head and concentration are applied to the subsurface domain, and the red dashed line is where the sea level height boundary condition (h0.t/) is applied to the surface domain.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/509b0c4e-8182-48d1-b29c-fc38f812b815/Capture.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Coastal Topography and Hydrogeology Control Critical Groundwater Gradients and Potential Beach Surface Instability During Storm Surges - Make it stand out</image:title>
      <image:caption>Figure 2: Surface flooding and vertical hydraulic gradients at (a) 0.5, (b) 4.3, (c) 6.2, and (d) 8.4 h after the simulated surge begins. In each panel, the surface domain is shown on top, the subsurface three-dimensional domain and vertical gradients are shown below, and the two cross sections through the subsurface are shown: shore-parallel (left in each panel) and shore-perpendicular (right).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/rene-therrien-appointed-director-centreau</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/fae30b6f-d68e-40d9-8110-bb48a4c5a677/logo-centre-de-recherche-sur-eau-centreau.png</image:loc>
      <image:title>Aquanty Blog - Aquanty co-founder Rene Therrien Appointed Director of CentrEau - Make it stand out</image:title>
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      <image:title>Aquanty Blog - Aquanty co-founder Rene Therrien Appointed Director of CentrEau - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-dec-2022</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-geothermal-energy-potential-active-northern-underground-mines</loc>
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    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Geothermal Energy Potential of Active Northern Underground Mines: Designing a System Relying on Mine Water - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-mine-rock-stockpile-reclamation-trial-detour-lake-mine</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Mine rock stockpile reclamation trial, Detour Lake Mine - Make it stand out</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/351600b7-cc9f-4469-b0cf-99df3c999c68/Capture2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Mine rock stockpile reclamation trial, Detour Lake Mine - Make it stand out</image:title>
      <image:caption>Conceptual hydrologic model for reclamation cover overlying waste rock</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/54933889-0e3d-4e89-8a66-380eb0785a3a/Capture3.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Mine rock stockpile reclamation trial, Detour Lake Mine - Make it stand out</image:title>
      <image:caption>Soil temperature, soil-moisture content, and soil-water tension data from Plot 10B (0.7 m thick cover) compared with hydrologic modelling results for a 0.7 m thick cover (heavy black and grey lines represent model results).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/aquanty-staff-research-saturated-hydraulic-conductivity-in-northern-peats-inferred-from-other-measurements</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-nov-2022</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/improved-process-based-streamflow-simulation-through-ensemble-stochastic-data-driven-approaches</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-evaluation-baseflow-separation-methods</loc>
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    <priority>0.5</priority>
    <lastmod>2026-01-05</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluation of baseflow separation methods with real and synthetic streamflow data from a watershed - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/ac47ba1a-71dd-49a4-9759-97621f625002/figure_HGS+model.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluation of baseflow separation methods with real and synthetic streamflow data from a watershed - Make it stand out</image:title>
      <image:caption>Figure 1. Components of the HydroGeoSphere (HGS) model constructed for the ACW by Tong et al. (2021) and utilized to generate synthetic streamflow and baseflow hydrographs, comprising of four components: land cover, 3D mesh, soil type, and geological model.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/bd89e2d9-ac41-49d2-886e-0780f8552495/figure+7.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Evaluation of baseflow separation methods with real and synthetic streamflow data from a watershed - Make it stand out</image:title>
      <image:caption>Figure 2. Comparison between actual and synthetic streamflow from HGS for the ACW from May 1, 2013 to April 30, 2016.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-oct-2022</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/sub-seasonal-soil-moisture-forecasting-powered-by-hydrogeosphere</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/56f756c5-96b7-4029-85d9-21e8c911f59f/Picture1.png</image:loc>
      <image:title>Aquanty Blog - Sub-Seasonal Soil Moisture Forecasting powered by HydroGeoSphere - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/467a591e-7a6c-473d-9f6b-ecf5cf0a32d4/Picture2.png</image:loc>
      <image:title>Aquanty Blog - Sub-Seasonal Soil Moisture Forecasting powered by HydroGeoSphere - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/642ad4f8-5688-46f2-9201-994d841947df/Picture3.png</image:loc>
      <image:title>Aquanty Blog - Sub-Seasonal Soil Moisture Forecasting powered by HydroGeoSphere - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/e21427dc-b7b1-438d-bc57-83faa6c6a21b/Picture4.png</image:loc>
      <image:title>Aquanty Blog - Sub-Seasonal Soil Moisture Forecasting powered by HydroGeoSphere - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/a2c9637f-5219-4f8a-ba00-02ad0f5e6564/Picture5.png</image:loc>
      <image:title>Aquanty Blog - Sub-Seasonal Soil Moisture Forecasting powered by HydroGeoSphere - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/2c46c257-06d0-4240-8765-ebab9e266be6/Picture6.png</image:loc>
      <image:title>Aquanty Blog - Sub-Seasonal Soil Moisture Forecasting powered by HydroGeoSphere - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-sequential-surface-subsurface-flow-modeling-tropical-aquifer</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Sequential surface and subsurface flow modeling in a tropical aquifer under different rainfall scenarios - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-sep-2022</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hydrogeosphere-workshop-kigam</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/76bcdedf-df81-4e4f-ac05-38142a3bd2c9/HGS_WORKSHOP_KIGAM_2022-1.jpg</image:loc>
      <image:title>Aquanty Blog - HydroGeoSphere workshop with Korea Institute of Geoscience and Mineral Resources - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1a65e863-84b9-44c2-9b8c-76af64bce592/HGS_WORKSHOP_KIGAM_2022-2.jpg</image:loc>
      <image:title>Aquanty Blog - HydroGeoSphere workshop with Korea Institute of Geoscience and Mineral Resources - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-combining-experimental-modelling-approaches-monitor-tracer-through-hyporheic-zone</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1661269682461-LAH5K6V6FNLLGJOT7LZD/research+highlights_final_v2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Combining experimental and modelling approaches to monitor the transport of an artificial tracer through the hyporheic zone - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/western-producer-farmers-can-mitigate-extreme-weather</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/0b8e6bd6-c307-4289-a5dc-1a891e72b79a/aquanty+in+the+news.PNG</image:loc>
      <image:title>Aquanty Blog - The Western Producer - Farmers can mitigate extreme weather: study - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-impacts-coastal-shrimp-ponds-saltwater-intrusion-submarine-groundwater-discharge-xs8ac</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-assigning-spatially-variable-pm-properties</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-01-21</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Assigning Spatially Variable PM Properties using “Map property from raster for chosen elements” - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f5177284-a9c8-4dc2-85a9-5908e04e5e0c/capture1.png</image:loc>
      <image:title>Aquanty Blog - Assigning Spatially Variable PM Properties using “Map property from raster for chosen elements” - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/cb7db96a-cd0e-4e13-885b-3119f9d52d56/capture2.png</image:loc>
      <image:title>Aquanty Blog - Assigning Spatially Variable PM Properties using “Map property from raster for chosen elements” - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-aug-2022</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/manitoba-cooperator-high-tech-future-flood-fighting</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/45f8eb1c-e941-44e5-b3ee-922c9f7f23f6/Aquanty-forecast-tool-subwatersheds-707x539.jpeg</image:loc>
      <image:title>Aquanty Blog - Manitoba Cooperator - The high-tech future of flood fighting - Make it stand out</image:title>
      <image:caption>Aquanty draws from real-time models in 15 sub-watershed districts in the Assiniboine River Basin. photo: MFGA</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/thermal-energy-transport-and-saltwater-intrusion-modelling-with-hydrogeosphere</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-01-09</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-impacts-coastal-shrimp-ponds-saltwater-intrusion-submarine-groundwater-discharge</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/c3a9a815-9739-46d0-9a46-06f8f158adc0/figure3forhgs.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Impacts of Coastal Shrimp Ponds on Saltwater Intrusion and Submarine Groundwater Discharge - Make it stand out</image:title>
      <image:caption>Schematic diagram of surface and subsurface model domains and simulation scenarios. (a) The unconfined aquifer extends offshore with pondwater (light blue) and seawater (dark blue) prescribed at the surface. White dashed line indicates groundwater table. Pond salinity, pond water depth, and farm width were varied to represent scenarios of different aquaculture practices. The plotted salinity distribution is for the scenario with the bold parameter values.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/a253d4c4-6869-41b4-8a98-e2a949c37b3b/figure6hgs.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Impacts of Coastal Shrimp Ponds on Saltwater Intrusion and Submarine Groundwater Discharge - Make it stand out</image:title>
      <image:caption>The calculated values of the indicators in response to different pond depths and salinities (with constant pond width of 300 m): (a) salinized area, (b) infiltrated salt mass, (c) recovery rate, (d) Fresh SGD, (e) saline SGD, and (f) percent saltwater circulation (PSC).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/physics-based-hydrological-modeling-predict-soil-moisture-cold-climate-mesoscale-catchment</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-subglacial-meltwater-recharge-dongkemadi-river-basin</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/aquanty-staff-research-highlight-pre-press-spatial-patterns-and-mass-balance-sodium-near-surface-peat-constructed-fen</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-june-2022-ka93n</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-analysis-drought-conditions-impacts-headwater-stream-mountain-ranges</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/9ebe03f3-b49d-4816-874d-6a7a4d77d162/Capture1.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Analysis of drought conditions and their impacts in a headwater stream in the Central European lower mountain ranges - Make it stand out</image:title>
      <image:caption>Figure 1: Map of the Lehstenbach catchment.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/a842dc2f-19f9-49d6-9962-49d9e54ae972/Capture.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Analysis of drought conditions and their impacts in a headwater stream in the Central European lower mountain ranges - Make it stand out</image:title>
      <image:caption>Figure 4: Visual summary of water balance components averaged over 30 years for near (2021–2050) and far future (2071–2100). The components are depicted as ranges (minimum to maximum) of all climate change projections, where the dotted lines show the near future range, and the solid lines the far future range. A averaged total monthly Precipitation (P) in [mm month-1], B averaged total monthly Actual Evapotranspiration (AET) in [mm month-1], C averaged total monthly Discharge (Q) in [mm month-1], and D averaged total monthly Storage deficit (∆ S) in [mm month-1].</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-dynamic-steady-state-coastal-aquifers-driven-by-multiscale-cyclical-processes</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-09-25</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/da3eb614-4947-4d72-b8c4-4c435521746c/GRL_paper_highlight_glacial_model.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Dynamic Steady State in Coastal Aquifers Is Driven by Multi‐Scale Cyclical Processes, Controlled by Aquifer Storativity. - Make it stand out</image:title>
      <image:caption>Glacial-scale changes in sea level as simulated (red curve) and the reconstructed paleo sea levels in black dashed line (Person et al., 2003). Red/blue points in the upper-left panel are the model nodes where sea level and recharge boundary conditions were applied, respectively.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/e7c46e2d-1248-4c37-87e7-94d954f9c944/GRL_paper_highlight_glacial_results.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Dynamic Steady State in Coastal Aquifers Is Driven by Multi‐Scale Cyclical Processes, Controlled by Aquifer Storativity. - Make it stand out</image:title>
      <image:caption>Normalized salt mass and the applied BC (blue curve) for the glacial-scale fluctuations in sea level (left) and the distribution of the mixing zone in steady-state conditions (black) and for transient conditions (blue) delineated by the C = 0.1 (labeled) and the C = 0.9 contours based on glacial fluctuations in sea level (right).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-assign-multiple-observation-points-based-on-depth-from-ground-surface</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-12</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Assign Multiple Observation Points Based on Depth from Ground Surface - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/c21d3a4f-3707-4272-8f17-19a2e8fdabe2/image+1.png</image:loc>
      <image:title>Aquanty Blog - Assign Multiple Observation Points Based on Depth from Ground Surface - Make it stand out</image:title>
      <image:caption>Figure 1: “Make observation Point by depth” example input</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1e17dfd6-cf00-422d-ba74-fa97635227a3/image+2.png</image:loc>
      <image:title>Aquanty Blog - Assign Multiple Observation Points Based on Depth from Ground Surface - Make it stand out</image:title>
      <image:caption>Figure 2: Resulting distribution of observation points using “Make observation Point by depth”</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-june-2022</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/cosia-modelling-the-impact-of-climate-change</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/3ba047f1-b040-43bc-89f9-40042039af39/domain_forecast.PNG</image:loc>
      <image:title>Aquanty Blog - Modelling the Impact of Climate Change in the Athabasca River Basin - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/rising-importance-economic-valuation-ecosystem-services-protecting-canadas-vital-resources</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/cse-tech-tuesday-aquanty-spotlight</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/aquantys-forecasting-platform-featured-in-mfga-grasslander</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/eacd449b-6075-4d8a-ab0c-15568ec41786/Picture1.png</image:loc>
      <image:title>Aquanty Blog - Aquanty's Forecasting Platform Featured in the Spring Issue of MFGA Grasslander - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/ee367665-d93c-483e-9f55-80721946bbce/Picture2.png</image:loc>
      <image:title>Aquanty Blog - Aquanty's Forecasting Platform Featured in the Spring Issue of MFGA Grasslander - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-sources-surface-water-hydraulic-mixing-cell-modeling</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-01-05</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/47e8f9e7-048f-4206-b638-aeb4be92b7cc/Capture1.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Sources of surface water in space and time: Identification of delivery processes and geographical sources with hydraulic mixing-cell modeling - Make it stand out</image:title>
      <image:caption>Figure 1. Model setup of the 42 ha Weierbach catchment in western Luxembourg. The three riparian-stream areas investigated in this study are located at an upstream section at the eastern tributary (U, 155 m2), a midstream section at the middle tributary (M, 169 m2), and a downstream section at the main stream (D, 170 m2). The nested model mesh is colored according to the delineation of the surface domain into hillslopes and plateau, riparian zone, and stream channel. The profile at the bottom right shows the vertical discretization of the subsurface model domain and the assigned parameterization zones in and adjacent to the riparian zone, corresponding to the fresh and fractured bedrock (slate and phyllites), the subsolum (regolithic saprock), the solum of the hillslopes and plateau (Cambisol), and the riparian soil (Leptosol) of the catchment.</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Sources of surface water in space and time: Identification of delivery processes and geographical sources with hydraulic mixing-cell modeling - Make it stand out</image:title>
      <image:caption>Figure 3. Output and processing of the HMC simulation exemplified for POI 1 located in the stream channel of area U (cf. Figure 2). Time series of hourly precipitation and simulated discharge at the POI are shown at the top of each figure panel. Stacked time series for fractions of water originating from the seven different initial source areas defined in the surface and subsurface model domains (cf. Figure 1), fractions of precipitation, and reset fractions visualize the dynamic mixing of water sources (bottom of each figure panel). Gaps in the time series of fractions of water sources indicate that the POI was inactive (simulated discharge is zero) or that the time points were excluded from the analysis due to high mass balance errors (no simulated discharge shown). Gray dotted lines show the start of the 64 simulation sub-periods where water sources were re-initialized according to the seven different source areas.</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Sources of surface water in space and time: Identification of delivery processes and geographical sources with hydraulic mixing-cell modeling - Make it stand out</image:title>
      <image:caption>Figure 5. Spatial variability of delivery processes. The bars visualize the mixing ratio of different sources of surface water at the 36 POIs located in the stream channel (blue stars), in the riparian zone (yellow stars), and at unclassifiable positions (green stars) in areas U, M, and D (cf. Figure 2). The POIs enclosed in brown boxes are at locations with assumed distinct exfiltration of subsurface water (cf. Figure 2). The fractions of water sources are the arithmetic mean of the fractions of water sources after the first time step of each of the 64 sub-period simulations (cf. Figure 3).</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-use-tabulated-unsaturated-functions</loc>
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    <lastmod>2025-05-05</lastmod>
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      <image:title>Aquanty Blog - 'use tabulated unsaturated functions' - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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      <image:title>Aquanty Blog - 'use tabulated unsaturated functions' - Make it stand out</image:title>
      <image:caption>Figure 1: Command Description</image:caption>
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      <image:title>Aquanty Blog - 'use tabulated unsaturated functions' - Make it stand out</image:title>
      <image:caption>Figure 2: Command Added to 'smith.mprops' File</image:caption>
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      <image:title>Aquanty Blog - 'use tabulated unsaturated functions' - Make it stand out</image:title>
      <image:caption>Figure 3: Simulation Runtime Improvements</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/cea-mem-joint-training-session</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:title>Aquanty Blog - CEA-MEM Joint Training Session - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/d84bdb79-22ce-44ae-a3c6-017619f4a688/Capture2.PNG</image:loc>
      <image:title>Aquanty Blog - CEA-MEM Joint Training Session - Make it stand out</image:title>
      <image:caption>Dr. Boubacar Abdou Boko demonstrates the visualization of HydroGeoSphere model results.</image:caption>
    </image:image>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/036719d5-f2b1-44d6-9fdf-1926fdb04ae7/Capture3.PNG</image:loc>
      <image:title>Aquanty Blog - CEA-MEM Joint Training Session - Make it stand out</image:title>
      <image:caption>Attendees working through HydroGeoSphere tutorials.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-may-2022</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/aquanty-staff-research-highlight-spatial-patterns-and-mass-balance-sodium-near-surface-peat-constructed-fen</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-transit-time-temperature-control-aerobic-respiration-denitrification-riparian-zone</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Transit-Time and Temperature Control the Spatial Patterns of Aerobic Respiration and Denitrification in the Riparian Zone - Make it stand out</image:title>
      <image:caption>Figure 1: (a) Mesh of the model domain and applied BC's; the inset plot shows the region where well-to-well tracer-tests were performed; (b) Lateral view of model domain colored with hydrogeological units, and detail to layer thickness on the top cells near the stream.</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Transit-Time and Temperature Control the Spatial Patterns of Aerobic Respiration and Denitrification in the Riparian Zone - Make it stand out</image:title>
      <image:caption>Figure 7: (a) DOz for different constant TGW and varying Q scenarios. The black crosses denote the resulting DOz volumes for the simulated period; (b and c) 3D views of DOz volumes for (b) High and for (c) Low) Q scenarios and two different TGW values. Note the vertical exaggeration of the 3D plots (20x).</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-particle-tracing</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-12</lastmod>
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      <image:title>Aquanty Blog - Particle Tracing - Make it stand out</image:title>
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      <image:title>Aquanty Blog - Particle Tracing - Make it stand out</image:title>
      <image:caption>Figure 1: In-element tracing of a particle with known starting position and elemental velocity field.</image:caption>
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      <image:title>Aquanty Blog - Particle Tracing - Make it stand out</image:title>
      <image:caption>Figure 2: Determining the particle exit point</image:caption>
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      <image:title>Aquanty Blog - Particle Tracing - Make it stand out</image:title>
      <image:caption>Figure 3: Particle reflection and the exit criterion</image:caption>
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      <image:title>Aquanty Blog - Particle Tracing - Make it stand out</image:title>
      <image:caption>Figure 4: Particle travel time</image:caption>
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      <image:title>Aquanty Blog - Particle Tracing - Make it stand out</image:title>
      <image:caption>Figure 5: Dead-end elements</image:caption>
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      <image:title>Aquanty Blog - Particle Tracing - Make it stand out</image:title>
      <image:caption>Figure 6: Particle exiting elements via faces</image:caption>
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      <image:title>Aquanty Blog - Particle Tracing - Make it stand out</image:title>
      <image:caption>Figure 7: Particle exiting elements via nodes and segments</image:caption>
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      <image:title>Aquanty Blog - Particle Tracing - Make it stand out</image:title>
      <image:caption>Figure 8: Initial particle distribution</image:caption>
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      <image:title>Aquanty Blog - Particle Tracing - Make it stand out</image:title>
      <image:caption>Figure 9: The ‘particle_travel_time’ output file</image:caption>
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      <image:title>Aquanty Blog - Particle Tracing - Make it stand out</image:title>
      <image:caption>Figure 10: The ‘particle location’ output file</image:caption>
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      <image:title>Aquanty Blog - Particle Tracing - Make it stand out</image:title>
      <image:caption>Figure 11: Particle trace path lines for the ‘R5_particles’ model after 30 days (black lines indicate particle traces; red spheres indicate the location of pumping wells (Fnodal_5))</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-apr-2022</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:title>Aquanty Blog - NEW version of HGS (April 2022 - Revision 2385) - Make it stand out</image:title>
      <image:caption>Example of Particle Tracing with the R5 Tutorial Project. Visit the HGS User Community to download.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-finite-volume-flux-reconstruction-semi-analytical-particle-tracking</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Finite-volume flux reconstruction and semi-analytical particle tracking on triangular prisms for finite-element-type models of variably-saturated flow - Make it stand out</image:title>
      <image:caption>Figure 1: Application of the finite-volume flux reconstruction to the catchment scale. Comparison of the hydraulic head field of the primal finite-element type solution at the top of the domain (a) and at the bottom of the domain (c) with the results for the finite-volume flux reconstruction at the top of the domain (b) and at the bottom (d), respectively. At the top flow is in general unsaturated whereas at the bottom flow is saturated everywhere.</image:caption>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Finite-volume flux reconstruction and semi-analytical particle tracking on triangular prisms for finite-element-type models of variably-saturated flow - Make it stand out</image:title>
      <image:caption>Figure 2: Trajectories of particles, which are released at the top of the domain and tracked until they reach an outlet boundary. Possible ending locations are drainage channels (green), the Ammer river (blue), groundwater outflow within the Ammer valley (orange), or groundwater outflow in the Neckar valley (purple).</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-predicting-watershed-scale-water-quality-targets</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Predicting  Watershed Scale Surface Water Quality Targets With a Combined Fully-Integrated Groundwater-Surface Water Model and Machine Learning Approach - Make it stand out</image:title>
      <image:caption>The South Nation Watershed (SNW) HydroGeoSphere Model</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-visualizing-models-components-using-to-tecplot-commands</loc>
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    <priority>0.5</priority>
    <lastmod>2025-02-12</lastmod>
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      <image:title>Aquanty Blog - Visualizing Models Components Using to Tecplot Commands - Make it stand out</image:title>
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      <image:title>Aquanty Blog - Visualizing Models Components Using to Tecplot Commands - Make it stand out</image:title>
      <image:caption>Figure 1: Tecplot visualization of various to tecplot command outputs.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-simulating-fully-integrated-hydrological-dynamics-in-complex-alpine-headwaters</loc>
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    <priority>0.5</priority>
    <lastmod>2025-09-25</lastmod>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Simulating fully-integrated hydrological dynamics in complex Alpine headwaters: potential and challenges - Make it stand out</image:title>
      <image:caption>Figure 1: The study site with two adjacent headwater catchments in the western Swiss Alps (the Vallon de Nant and the Vallon de La Vare) and associated model mesh (23 layers, ~272,000 nodes).</image:caption>
    </image:image>
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      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Simulating fully-integrated hydrological dynamics in complex Alpine headwaters: potential and challenges - Make it stand out</image:title>
      <image:caption>Figure 2: Streamflow and groundwater levels for the fully-calibrated “full complexity” model using hourly, 25 m resolution forcing data.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-mar-2022</loc>
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    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:title>Aquanty Blog - NEW version of HGS (March 2022 - Revision 2372) - Make it stand out</image:title>
      <image:caption>Example of the “Mesh Quality Stats” written to the *.ECO file.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-groundwater-surface-water-forecast-evaluation-two-contrasting-hydrostratigraphic-settings-southern-ontario</loc>
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    <lastmod>2024-03-14</lastmod>
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    <lastmod>2025-02-12</lastmod>
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      <image:title>Aquanty Blog - Reservoir with Spillway - Make it stand out</image:title>
      <image:caption>Figure 1: Conceptual Model of the Basic Reservoir Boundary Condition</image:caption>
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      <image:title>Aquanty Blog - Reservoir with Spillway - Make it stand out</image:title>
      <image:caption>Figure 2: Conceptual Model of the New Reservoir with Spillway Boundary Condition</image:caption>
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      <image:title>Aquanty Blog - Reservoir with Spillway - Make it stand out</image:title>
      <image:caption>Figure 3: Results of the Reservoir with Spillway Boundary Conditions</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/webinar-hydrogeosphere-numerical-methods-and-parallel-processing</loc>
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    <lastmod>2024-03-14</lastmod>
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  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-integrated-surface-subsurface-water-solute-modeling-reclaimed-in-pit-oil-sands-mine</loc>
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    <lastmod>2025-09-25</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/41124ff2-57e4-402c-b98b-92a619e70d94/Capture.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Integrated surface-subsurface water and solute modeling of a reclaimed in-pit oil sands mine: Effects of ground freezing and thawing - Make it stand out</image:title>
      <image:caption>Figure 1: Study Area and Conceptual Model of the Reclamation Setting</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/74286862-4402-411a-859f-d68624f944d1/Capture2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Integrated surface-subsurface water and solute modeling of a reclaimed in-pit oil sands mine: Effects of ground freezing and thawing - Make it stand out</image:title>
      <image:caption>Figure 2: Runoff hydrograph for simulations with and without pore-water freeze/thaw.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-feb-2022</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/b7ad42e4-7ee0-41ee-b073-14b59fd4082a/reservoir_with_spillway_diagram.PNG</image:loc>
      <image:title>Aquanty Blog - NEW version of HGS (February 2022 - Revision 2356) - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-hybrid-approach-integrated-hydrologic-simulation-baseflow-with-iterative-ensemble-smoother</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/9832978c-fa74-47b6-9810-fe09c3fd5576/Capture2.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – A hybrid approach for integrated surface and subsurface hydrologic simulation of baseflow with Iterative Ensemble Smoother - Make it stand out</image:title>
      <image:caption>3D HydroGeoSphere Model of the Study Area in Southern Quebec, Canada</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-fluid-volume-concentration-threshold</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-12</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Fluid Volume Concentration Threshold - Make it stand out</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/67751506-360d-4832-9033-0800477cc104/Image+1.png</image:loc>
      <image:title>Aquanty Blog - Fluid Volume Concentration Threshold - Make it stand out</image:title>
      <image:caption>Figure 1: Module 4B conceptual model</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/31ecdff6-1fb1-4e60-a7f3-984ba3633664/image+2.png</image:loc>
      <image:title>Aquanty Blog - Fluid Volume Concentration Threshold - Make it stand out</image:title>
      <image:caption>Figure 2: Command description</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/053b8092-f107-4257-a187-ace72ee02fb6/image+3.png</image:loc>
      <image:title>Aquanty Blog - Fluid Volume Concentration Threshold - Make it stand out</image:title>
      <image:caption>Figure 3: Example of fluid volume concentration threshold command in .grok</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/ba4efb81-ae1a-4c40-bfe6-73dd8080f049/image+4.png</image:loc>
      <image:title>Aquanty Blog - Fluid Volume Concentration Threshold - Make it stand out</image:title>
      <image:caption>Figure 4: Resulting output file</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/813eed04-f465-42fa-92ae-c38112de8fc6/Image+5.png</image:loc>
      <image:title>Aquanty Blog - Fluid Volume Concentration Threshold - Make it stand out</image:title>
      <image:caption>Figure 5: Resulting salt concentration distribution (isosurface displayed at conc. = 1.0 kg/m^3)</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-january-2022</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-using-depth-specific-electrical-conductivity-estimates</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/9f343a48-06fc-4ad5-912f-2f50e21ebb5e/Capture.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Using depth specific electrical conductivity estimates to improve hydrological simulations in a heterogeneous tile-drained field - Make it stand out</image:title>
      <image:caption>3D HydroGeoSphere Model of the Study Area</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-adaptive-zone-based-refinement-method</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/04e9bfb8-27f7-495f-ba44-d01a1d9c5472/Capture.PNG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – An adaptive zone-based refinement method for characterizing a highly complex aquifer system model - Make it stand out</image:title>
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    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-december-2021</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-characterizing-the-effects-of-dry-antecedent-soil-moisture-conditions</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/9b7c886a-8bb6-4764-a896-98494e7293c8/image2_final.jpeg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Characterizing the effects of dry antecedent soil moisture conditions, channel transmission losses, and variable precipitation on peak flow scaling - Make it stand out</image:title>
      <image:caption>Model mesh and parameterization of surface and porous medium domains.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/0a8508e0-0e28-4106-b479-21d5401501ee/image1_final.jpeg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Characterizing the effects of dry antecedent soil moisture conditions, channel transmission losses, and variable precipitation on peak flow scaling - Make it stand out</image:title>
      <image:caption>Discharge over a range of antecedent moisture conditions for a 5-year return period precipitation event at various locations (see web version of the article for further details).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/research-for-industries-rfi-lecture-series-steven-k-frey</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/open-access-groundwater-overexploitation-in-the-north-china-plain</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/intro-integrated-hydrologic-modelling-hydrogeosphere-sudicky</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/aquanty-staff-research-highlight-athabasca-oil-sands-hydrology</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hydrogeosphere-research-estimating-anthropogenic-effects-highly-controlled-basin-integrated-mode</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/219e9768-ed90-4082-8137-da5773a28112/Research_Highlight_GRB.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT – Estimating Anthropogenic Effects on a Highly-Controlled Basin with an Integrated Surface-Subsurface Model - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-calculate-fluid-volumes-for-selected-elements</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-12</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Calculate fluid volumes for selected elements - Make it stand out</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/fdcebc20-e0e1-40b4-a547-56a42963cba3/image+1.png</image:loc>
      <image:title>Aquanty Blog - Calculate fluid volumes for selected elements - Make it stand out</image:title>
      <image:caption>Figure 1: Command description for Fluid volume for chosen elements</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/ce5a2a7a-7f28-43fa-9b6c-e26c7d1f44c4/Image+2.png</image:loc>
      <image:title>Aquanty Blog - Calculate fluid volumes for selected elements - Make it stand out</image:title>
      <image:caption>Figure 2: Command description for Fluid volume for chosen elements by layer</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/ca811236-a0a5-4f90-876b-3dfcfd312409/Image+3.png</image:loc>
      <image:title>Aquanty Blog - Calculate fluid volumes for selected elements - Make it stand out</image:title>
      <image:caption>Figure 3: Command description for Fluid volume to tecplot</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/4afdb218-7119-4a9f-b28c-855903c31446/Image+4.png</image:loc>
      <image:title>Aquanty Blog - Calculate fluid volumes for selected elements - Make it stand out</image:title>
      <image:caption>Figure 4: Results of fluid volume for chosen elements written to "abdul_algomesho.fluid_volume.volume_1.dat"</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/e6dea4d2-48e5-44be-af0b-4024f9c17563/Image+5.png</image:loc>
      <image:title>Aquanty Blog - Calculate fluid volumes for selected elements - Make it stand out</image:title>
      <image:caption>Figure 5: Results of fluid volume for chosen elements by layer written to "abdul_algomesho.fluid_volume.volume_2.dat"</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/3b2114b3-b61b-4fbb-93c5-18fbfabc47a9/Image+6.png</image:loc>
      <image:title>Aquanty Blog - Calculate fluid volumes for selected elements - Make it stand out</image:title>
      <image:caption>Figure 6: Timeseries showing results of fluid volume for chosen elements command</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/8fba4766-14ba-4d37-82b8-e8dd906e1d09/Image+7.png</image:loc>
      <image:title>Aquanty Blog - Calculate fluid volumes for selected elements - Make it stand out</image:title>
      <image:caption>Figure 7: Delineation of zones affected by fluid volume for chosen elements (left) and fluid volume for chosen elements by layer (right)</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-november-2021-bn64k</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/athabasca-river-basin-modelling-impact-climate-change-cosia-webinar</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-integrated-modelling-to-assess-climate-change-impacts-in-the-great-lakes-basin</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/aquantys-physics-based-hydrologic-forecasting-web-services-aquanty-webinar-hosted-by-the-meteorological-service-of-canada</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-nodal-flux-reduction-by-pressure-head-boundary-condition-modifier</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-12</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Nodal flux reduction by pressure head boundary condition modifier - Make it stand out</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/d486bb5a-8466-49cc-851c-03d8e3ea6b1c/image+1.png</image:loc>
      <image:title>Aquanty Blog - Nodal flux reduction by pressure head boundary condition modifier - Make it stand out</image:title>
      <image:caption>Figure 1: Simple Drain and Makeup Water box model</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/6d2d9d09-0aa3-4d12-adbd-083744f5869a/image+2.png</image:loc>
      <image:title>Aquanty Blog - Nodal flux reduction by pressure head boundary condition modifier - Make it stand out</image:title>
      <image:caption>Figure 2: Command description</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/51496c3b-a207-461e-9447-fd78ab2f8968/image+3.png</image:loc>
      <image:title>Aquanty Blog - Nodal flux reduction by pressure head boundary condition modifier - Make it stand out</image:title>
      <image:caption>Figure 3: Automatic flux reductions based on pressure head signal</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hydrogeosphere-october-2021</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/aquanty-sponsors-the-groundwater-project</loc>
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    <lastmod>2024-03-14</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1632498860537-FD3H26ZZZKYEKZGYSOX8/The-Groundwater-Project.png</image:loc>
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  <url>
    <loc>https://www.aquanty.com/blog/creating-a-sustainable-and-smart-future-aquanty-attends-geoniagara-2021</loc>
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    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-evaluating-landscape-influences-on-hydrologic-behavior-with-fully-integrated-groundwater-surface-water-model</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-response-hydrogeosphere-to-alternative-spatial-precipitation-simulation-methods</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hgs-september-2021-revision-2301</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-simulating-preferential-flow-snowmelt-partitioning-seasonally-frozen-hillslopes</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-zero-order-source-with-partitioning</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-12</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Zero Order Source with Partitioning - Make it stand out</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/c3b13e47-741f-4342-8ca7-4e9e9d92f669/Image+1.png</image:loc>
      <image:title>Aquanty Blog - Zero Order Source with Partitioning - Make it stand out</image:title>
      <image:caption>Figure 1: Effective production rate</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/0e605068-ae35-4cff-8f44-a6689e46be48/Image+2.png</image:loc>
      <image:title>Aquanty Blog - Zero Order Source with Partitioning - Make it stand out</image:title>
      <image:caption>Figure 2: Command description for “zero-order source with partitioning”</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f071b84e-78c2-4a7a-8802-352ce18714ef/Image+3.png</image:loc>
      <image:title>Aquanty Blog - Zero Order Source with Partitioning - Make it stand out</image:title>
      <image:caption>Figure 3: Results from three different versions of the “zero order source” commands</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/31a9a0bc-3592-4f21-b2ce-dce54c7b6e89/Image+4.png</image:loc>
      <image:title>Aquanty Blog - Zero Order Source with Partitioning - Make it stand out</image:title>
      <image:caption>Command Description:</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-storm-surges-coastal-salinization-saltwater-intrusion</loc>
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    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-development-of-integrated-numerical-model-in-prairie-environment</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-simple-drain-and-makeup-water-boundary-conditions</loc>
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    <lastmod>2025-01-21</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Simple Drain and Makeup Water Boundary Conditions - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/a066c4bc-73f5-49f7-837f-5a4d3799ff6a/Image+1.png</image:loc>
      <image:title>Aquanty Blog - Simple Drain and Makeup Water Boundary Conditions - Make it stand out</image:title>
      <image:caption>Figure 1: Base Configuration of Example Model</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/95d911ec-d80e-49f2-a225-750ff7d163b9/Image+2.png</image:loc>
      <image:title>Aquanty Blog - Simple Drain and Makeup Water Boundary Conditions - Make it stand out</image:title>
      <image:caption>Figure 2: Location of Simple Drain or Makeup Water BCs</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/b5af6f42-5b6d-4b9b-85d9-af31beb6eef8/Image+3.png</image:loc>
      <image:title>Aquanty Blog - Simple Drain and Makeup Water Boundary Conditions - Make it stand out</image:title>
      <image:caption>Figure 3: Comparison of results between base case (no BC), simple drain and makeup water</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hgs-august-2021-revision-2291</loc>
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    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-highlight-fully-coupled-hydrological-modeling-optimize-water-harvesting</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-blanking-by-element-number-with-tecplot-for-hydrogeological-models</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-12</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Blanking by element number with TecPlot for hydrogeological models - Make it stand out</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f67ff126-dd30-4603-ad74-ece9e46c4c21/Image+1.png</image:loc>
      <image:title>Aquanty Blog - Blanking by element number with TecPlot for hydrogeological models - Make it stand out</image:title>
      <image:caption>Figure 1: Prepare data</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/3aef2f83-062d-469c-b11a-ad6e625282d0/Image+2.png</image:loc>
      <image:title>Aquanty Blog - Blanking by element number with TecPlot for hydrogeological models - Make it stand out</image:title>
      <image:caption>Figure 2: Confirm new variable</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/80a3cba6-091e-4ea7-b77a-042aa5e909c3/Image+3.png</image:loc>
      <image:title>Aquanty Blog - Blanking by element number with TecPlot for hydrogeological models - Make it stand out</image:title>
      <image:caption>Figure 3: New IJKBlankZone macro</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/8dd954e9-2ce1-49c4-a167-0f8c82042edf/Image+4.png</image:loc>
      <image:title>Aquanty Blog - Blanking by element number with TecPlot for hydrogeological models - Make it stand out</image:title>
      <image:caption>Figure 4: Value Blanking dialogue window</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/490f62fe-52de-454e-bae7-cd8c3e355ec7/Image+5.png</image:loc>
      <image:title>Aquanty Blog - Blanking by element number with TecPlot for hydrogeological models - Make it stand out</image:title>
      <image:caption>Figure 5: Resulting blanking based on element number</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hgs-july-2021-revision-2280</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-new-commands-to-report-water-table-depth/elevation</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-12</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - New Commands to Report Water Table Depth/Elevation - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
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      <image:title>Aquanty Blog - New Commands to Report Water Table Depth/Elevation - Make it stand out</image:title>
      <image:caption>Figure 1: Report Water Table command entries from the Reference Manual (page 271)</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/16d08893-1ddc-4acd-a138-b96cfb84bca9/Image+2.png</image:loc>
      <image:title>Aquanty Blog - New Commands to Report Water Table Depth/Elevation - Make it stand out</image:title>
      <image:caption>Figure 2: Application of `Report water table’ commands in the .grok file</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/a932059a-bf86-4cee-9a78-c7d0fe976516/Image+3.png</image:loc>
      <image:title>Aquanty Blog - New Commands to Report Water Table Depth/Elevation - Make it stand out</image:title>
      <image:caption>Figure 3: Location of ‘Abdul_WaterTable’ observation points</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f46d3f6f-b9ba-4c9f-8d85-2e299d93c018/Image+4.png</image:loc>
      <image:title>Aquanty Blog - New Commands to Report Water Table Depth/Elevation - Make it stand out</image:title>
      <image:caption>Figure 4: “Report water table at xy” output file</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/rene-therrien-webinar-integrated-hydrological-modelling</loc>
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    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-restarting-a-terminated-run-using-restart-file</loc>
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    <priority>0.5</priority>
    <lastmod>2025-02-12</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Restarting a Terminated Run using restart_file_info.dat - Make it stand out</image:title>
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    <image:image>
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      <image:title>Aquanty Blog - Restarting a Terminated Run using restart_file_info.dat - Make it stand out</image:title>
      <image:caption>Figure 1: Example ‘parallelindx.dat’ file. Note that only the final setting (__Simulation_Restart, the “restart index”) is used in the model restart procedure. Restart mode is activated if &gt;1 when phgs.exe is initiated.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/b3bc505d-908f-4e43-898e-73f16c645e5d/image+2.png</image:loc>
      <image:title>Aquanty Blog - Restarting a Terminated Run using restart_file_info.dat - Make it stand out</image:title>
      <image:caption>Figure 2: Example ‘restart_file_info.dat’ file. This file is updated automatically and does not require user input, unless the command Restart write off has been included (see Figure 3 below).</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/cab78ffb-8328-4943-860f-c76a33d1aa89/User+Community+Content+-+Updated.png</image:loc>
      <image:title>Aquanty Blog - Restarting a Terminated Run using restart_file_info.dat - Make it stand out</image:title>
      <image:caption>Figure 3: Reference Manual entry for Restart write off command</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/723965b3-cceb-419b-aadc-5a4bc347b0e8/Picture4.jpg</image:loc>
      <image:title>Aquanty Blog - Restarting a Terminated Run using restart_file_info.dat - Make it stand out</image:title>
      <image:caption>Figure 4: The 'prefixo.eco' file can be used to identify the next target time and initial head index #s listed in the 'restart_file_info.dat' file.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/e5d54151-858e-4f05-b882-241e64e6477b/image+4.png</image:loc>
      <image:title>Aquanty Blog - Restarting a Terminated Run using restart_file_info.dat - Make it stand out</image:title>
      <image:caption>Figure 5: Abdul_Transport problems ‘restart_file_info.dat’ file after exactly 26 timesteps are successfully solved.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/bf7e1408-d0de-4b77-b54b-6aa0fda541d2/image+5.png</image:loc>
      <image:title>Aquanty Blog - Restarting a Terminated Run using restart_file_info.dat - Make it stand out</image:title>
      <image:caption>Figure 6: ‘abdul_transo.water_balance.dat’ after model termination/restart/completion.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hgs-june-2021-revision-2270</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/canada-1-water-announcement</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-02-25</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1622478446564-TMU79ZSD44NM51LNCF0S/blog+thumbnail.PNG</image:loc>
      <image:title>Aquanty Blog - Canada1Water - Evaluating climate change impacts on ground/surface water sustainability across continental Canada - Make it stand out</image:title>
      <image:caption>The C1W project will incorporate six basin-scale models across the entirety of continental Canada, from sea to shining sea to shining sea!</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-integrating-hgs-models-with-pest-for-automated-parameter-estimation</loc>
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    <priority>0.5</priority>
    <lastmod>2026-03-07</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Integrating HGS Models with PEST for Automated Parameter Estimation - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/bc883562-d7d7-452c-b7c4-89b51a18884b/Image+1.png</image:loc>
      <image:title>Aquanty Blog - Integrating HGS Models with PEST for Automated Parameter Estimation - Make it stand out</image:title>
      <image:caption>Figure 1: PEST Control File (.pst) Format Part 1</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/02a8991a-5f0e-4f94-94f0-72560557666c/Image+2.png</image:loc>
      <image:title>Aquanty Blog - Integrating HGS Models with PEST for Automated Parameter Estimation - Make it stand out</image:title>
      <image:caption>Figure 2: PEST Control File (.pst) Format Part 2</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/b06548f4-e3d3-405c-8799-a07b4909b97e/Image+3.png</image:loc>
      <image:title>Aquanty Blog - Integrating HGS Models with PEST for Automated Parameter Estimation - Make it stand out</image:title>
      <image:caption>Figure 3: Input Template File (.tpl) Format</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/810048bb-e6fc-4873-9c38-ecabdde65047/Image+4.png</image:loc>
      <image:title>Aquanty Blog - Integrating HGS Models with PEST for Automated Parameter Estimation - Make it stand out</image:title>
      <image:caption>Figure 4: Output Reading Instruction File (.ins) Format</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hgs-research-8-projects-from-the-european-geosciences-union-2021-general-assembly</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/new-version-of-hgs-may2021-revision-2255</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/machine-learning-challenge-enhancing-satellite-image-mosaics</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1620131828496-HDVYH99E933OFS3BQMSO/Capture.PNG</image:loc>
      <image:title>Aquanty Blog - Aquanty Hosts Machine Learning Challenge: Enhancing Satellite Image Mosaics</image:title>
      <image:caption>Figure 1: The Goal – Enhanced Satellite Image Mosaics, image source: https://remicres.github.io/super-resolution (Interactive Urban Demo)</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-batch-renaming-of-hgs-output-binaries-for-hsplot</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-19</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Batch renaming of HGS output binaries for HSPLOT - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
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      <image:title>Aquanty Blog - Batch renaming of HGS output binaries for HSPLOT - Make it stand out</image:title>
      <image:caption>Figure 1: Warning issues due to missing file</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/6a17c96e-f82d-405b-854d-23f3e913b6ae/Image+2.png</image:loc>
      <image:title>Aquanty Blog - Batch renaming of HGS output binaries for HSPLOT - Make it stand out</image:title>
      <image:caption>Figure 2: Batch file contents</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/727fe0a6-6fdf-4f62-bbe4-88b8331ab928/Image+3.png</image:loc>
      <image:title>Aquanty Blog - Batch renaming of HGS output binaries for HSPLOT - Make it stand out</image:title>
      <image:caption>Figure 3: Using the ‘Batch file renaming.xlsx’ file</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/7159c2f4-38cb-4ad7-8943-158c530419fa/Image+4.png</image:loc>
      <image:title>Aquanty Blog - Batch renaming of HGS output binaries for HSPLOT - Make it stand out</image:title>
      <image:caption>Figure 4: Results of the rename.bat script</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/ice-roughness-estimation-remotely-piloted-aircraft-photogrammetry</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/hydrogeosphere-research-hydraulic-tomography-municipal-well-groundwater-models</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2021/4/12/new-version-of-hgs-april-2021-revision-2240</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2021/4/12/updates-to-hydrogeosphere-pricing-and-licensing-structure</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-writing-a-cleanup-script-to-clear-a-model-folder</loc>
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    <priority>0.5</priority>
    <lastmod>2025-02-20</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Writing a Cleanup Script to Clear a Model Folder - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/62c129a5-819f-4123-ab8f-cffc5feb37f9/Image+1.png</image:loc>
      <image:title>Aquanty Blog - Writing a Cleanup Script to Clear a Model Folder - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/9f6d9aba-e965-423a-b14d-29c731c29fcb/Image+2.png</image:loc>
      <image:title>Aquanty Blog - Writing a Cleanup Script to Clear a Model Folder - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/da93a745-ce5a-470d-9891-7cad13bb5a2e/Image+3.png</image:loc>
      <image:title>Aquanty Blog - Writing a Cleanup Script to Clear a Model Folder - Make it stand out</image:title>
      <image:caption>BEFORE</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/af47714f-0acf-4b0e-a81c-8633b6a39e51/Image+4.png</image:loc>
      <image:title>Aquanty Blog - Writing a Cleanup Script to Clear a Model Folder - Make it stand out</image:title>
      <image:caption>AFTER</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2021/3/30/hgs-research-highlight-investigating-groundwater-lake-interactions-in-the-laurentian-great-lakes-with-a-fully-integrated-surface-water-groundwater-model</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2021/3/24/aquanty-founder-ed-sudicky-1994-darcy-lecturer</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-time-varying-maximum-timestep</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-20</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Time Varying Maximum Timestep - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f9d9c5dd-4212-4d46-a9cd-d5953aa026ca/Image+1.png</image:loc>
      <image:title>Aquanty Blog - Time Varying Maximum Timestep - Make it stand out</image:title>
      <image:caption>Figure 1: Command description</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/90a8df9f-9f3b-4a36-94cd-cd8a34bc3a2b/Image+2.png</image:loc>
      <image:title>Aquanty Blog - Time Varying Maximum Timestep - Make it stand out</image:title>
      <image:caption>Figure 2: Simulation time reports with/without time varying max timesteps</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/c594b761-9773-4bf0-b92e-ee0a20748de8/Image+3.png</image:loc>
      <image:title>Aquanty Blog - Time Varying Maximum Timestep - Make it stand out</image:title>
      <image:caption>Figure 3: Solute concentration distribution with/without time varying max timesteps</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2021/3/17/hgs-research-highlight-fully-integrated-groundwater-surface-water-forecasting-in-two-contrasting-hydrostratigraphic-settings-within-southern-ontario</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-minimum-layer-thickness-with-fixed-top-elevation-commands</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-21</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Minimum Layer Thickness (with fixed top elevation) Commands - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/d90b74d4-55fa-45ed-a02d-b8400e86b4c6/Image+1.png</image:loc>
      <image:title>Aquanty Blog - Minimum Layer Thickness (with fixed top elevation) Commands - Make it stand out</image:title>
      <image:caption>Figure 1: Command description (Minimum layer thickness)</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/47db54c9-ba5b-4f91-87ba-697ab8fbfa70/Image+2.png</image:loc>
      <image:title>Aquanty Blog - Minimum Layer Thickness (with fixed top elevation) Commands - Make it stand out</image:title>
      <image:caption>Figure 2: Layer pinchout</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/dc03a4fc-0511-4e1f-a931-632ecc396c0f/Image+3.png</image:loc>
      <image:title>Aquanty Blog - Minimum Layer Thickness (with fixed top elevation) Commands - Make it stand out</image:title>
      <image:caption>Figure 3: Pinchout resolved by increasing elevation of upper node-sheet</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/b0178610-ce70-4343-9a68-6fb6a1b211aa/Image+4.png</image:loc>
      <image:title>Aquanty Blog - Minimum Layer Thickness (with fixed top elevation) Commands - Make it stand out</image:title>
      <image:caption>Figure 4: Command description (Minimum layer thickness with fixed top elevation)</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/4545d6f0-0ed3-46f0-998f-1b50de18320d/Image+5.png</image:loc>
      <image:title>Aquanty Blog - Minimum Layer Thickness (with fixed top elevation) Commands - Make it stand out</image:title>
      <image:caption>Figure 5: Layer pinchout</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/ec5dd062-e2d1-43ea-b9a3-49469d887cc6/Image+6.png</image:loc>
      <image:title>Aquanty Blog - Minimum Layer Thickness (with fixed top elevation) Commands - Make it stand out</image:title>
      <image:caption>Figure 6: Pinchout resolved by decreasing elevation of lower node-sheets</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/961d6031-b46e-4133-bc31-ba9505ac88ee/Image+7.png</image:loc>
      <image:title>Aquanty Blog - Minimum Layer Thickness (with fixed top elevation) Commands - Make it stand out</image:title>
      <image:caption>Figure 7: Grok.exe displays error due to layer pinchout</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/e90114f7-4acb-421f-8b2a-b917731d4b43/Image+8.png</image:loc>
      <image:title>Aquanty Blog - Minimum Layer Thickness (with fixed top elevation) Commands - Make it stand out</image:title>
      <image:caption>Figure 8: Resulting layer distribution with “minimum layer thickness” command</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/77bcfcb1-3c7b-4862-9beb-4f7e949a6f3f/Image+9.png</image:loc>
      <image:title>Aquanty Blog - Minimum Layer Thickness (with fixed top elevation) Commands - Make it stand out</image:title>
      <image:caption>Figure 9: Resulting layer distribution with “minimum layer thickness with fixed top elevation” command</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2021/3/10/new-version-of-hgs-march-2021-revision-2223</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-assigning-property-zones-using-shapefile-data</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-20</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Assigning Property Zones using Shapefile Data - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/3c5ab614-3526-4694-a87c-deb458ad31b0/Image+1.png</image:loc>
      <image:title>Aquanty Blog - Assigning Property Zones using Shapefile Data - Make it stand out</image:title>
      <image:caption>Figure 1: Command description</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/b58afdc6-7b9e-457e-9c9b-64f190f24e48/Image+2.png</image:loc>
      <image:title>Aquanty Blog - Assigning Property Zones using Shapefile Data - Make it stand out</image:title>
      <image:caption>Figure 2: Porous media property zones</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2021/3/2/hgs-research-highlight-dual-permeability-modeling-of-preferential-flow-and-snowmelt-partitioning-in-frozen-soils</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-compute-post-simulation-average</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-03-03</lastmod>
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      <image:title>Aquanty Blog - Compute Post Simulation Average - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/ffd68fca-73d3-4399-b2dd-5465015cc654/Image+1.png</image:loc>
      <image:title>Aquanty Blog - Compute Post Simulation Average - Make it stand out</image:title>
      <image:caption>Figure 1: Command description</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/d8c3b584-3200-4ac7-8d1b-4267609d2f49/Image+2.png</image:loc>
      <image:title>Aquanty Blog - Compute Post Simulation Average - Make it stand out</image:title>
      <image:caption>Figure 2: Compute Post Simulation Average example output</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-skip</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-03-03</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Skip on/off/rest - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-speeding-up-hgs-models-using-unsaturated-tables</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-19</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Speeding up HGS models using “unsaturated tables” - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/48d1dc12-cec3-487e-aabf-707c778498b6/Image+1.png</image:loc>
      <image:title>Aquanty Blog - Speeding up HGS models using “unsaturated tables” - Make it stand out</image:title>
      <image:caption>Figure 1: Add command to *.mprops file</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/bc95ff0b-1f1d-470e-8096-774f20be6f79/Image+2.png</image:loc>
      <image:title>Aquanty Blog - Speeding up HGS models using “unsaturated tables” - Make it stand out</image:title>
      <image:caption>Figure 2: Auto-generated unsat tables</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/75ba45a0-515e-4393-9f65-a8a5ae39a413/Image+3.png</image:loc>
      <image:title>Aquanty Blog - Speeding up HGS models using “unsaturated tables” - Make it stand out</image:title>
      <image:caption>Figure 3: *.mprops file modified with unsaturated tables</image:caption>
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    <image:image>
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      <image:title>Aquanty Blog - Speeding up HGS models using “unsaturated tables” - Make it stand out</image:title>
      <image:caption>Figure 4: Model runtime using unsat tables (right) compared to unsat functions (left)</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-starting-a-model-with-previously-a-generated-head-field</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-03-03</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Starting a model with previously a generated head field - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-target-times</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-03-03</lastmod>
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      <image:title>Aquanty Blog - Target Times - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-making-use-of-the-scaling-factor-command-in-boundary-conditions</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-07-17</lastmod>
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      <image:title>Aquanty Blog - Making use of the scaling factor command in boundary conditions - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/d2011c65-2ca6-441f-92ac-7385d32c1feb/Image+1.png</image:loc>
      <image:title>Aquanty Blog - Making use of the scaling factor command in boundary conditions - Make it stand out</image:title>
      <image:caption>Figure 1: Setup of a scaling factor command</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/23185c44-a862-4f2f-86ab-91564a5ef1d4/Image+2.png</image:loc>
      <image:title>Aquanty Blog - Making use of the scaling factor command in boundary conditions - Make it stand out</image:title>
      <image:caption>Figure 2: Output hydrographs as a function of scaling factor (SF)</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-interpreting-phgs-exe-output-during-a-simulation</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-07-17</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/f8c1c842-3fd1-4546-9e68-23773b655f6e/Aquanty+Tutorials+-+Blog+Banner.png</image:loc>
      <image:title>Aquanty Blog - Interpreting phgs.exe output during a simulation - Make it stand out</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/a7aac2b1-9a37-45c6-8587-bfa14415795e/Image+1.png</image:loc>
      <image:title>Aquanty Blog - Interpreting phgs.exe output during a simulation - Make it stand out</image:title>
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  </url>
  <url>
    <loc>https://www.aquanty.com/blog/tutorial-output-peclet-number</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-12</lastmod>
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      <image:title>Aquanty Blog - Output Peclet Number - Make it stand out</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/6c5956d1-3bfb-45f1-a91a-1e554345c186/Image+1.png</image:loc>
      <image:title>Aquanty Blog - Output Peclet Number - Make it stand out</image:title>
      <image:caption>Figure 1: Peclet number distribution - coarse mesh</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/6b9cf209-348e-43dc-b990-b9698902dfc7/Image+2.png</image:loc>
      <image:title>Aquanty Blog - Output Peclet Number - Make it stand out</image:title>
      <image:caption>Figure 2: Evidence of numerical dispersion</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/e2e6d2eb-0bcc-4c5a-bb74-86177c6042dc/Image+3.png</image:loc>
      <image:title>Aquanty Blog - Output Peclet Number - Make it stand out</image:title>
      <image:caption>Figure 3: Peclet number distribution - fine mesh</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/0aa3df6a-8886-4acb-ab1d-2904ec32d0bb/Image+4.png</image:loc>
      <image:title>Aquanty Blog - Output Peclet Number - Make it stand out</image:title>
      <image:caption>Figure 4: Solute distribution after 30 years - fine mesh</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2019/11/23/aquanty-at-agc2019</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2019/4/3/aquanty-in-the-news</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2019/3/29/the-hgs-user-community-is-moving</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2019/1/17/check-out-the-groundwater-journals-special-section-on-integrated-hydrologic-modelling</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710625-DZ1DIKE4OTWC97P96COP/SpecialSection.jpg</image:loc>
      <image:title>Aquanty Blog - Groundwater Journal's Special Section on Integrated Hydrologic Modeling</image:title>
      <image:caption>Groundwater’s Special Section on Integrated Hydrologic Modeling</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2018/12/5/hgs-research-highlight-simulating-climate-change-impacts-on-surface-water-resources-within-a-lake-affected-region-using-regional-climate-projections</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710616-5KP0CW69TNNGGX8JIB0Q/Andre_figure1.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Simulating Climate Change Impacts on Surface Water Resources within a Lake Affected Region using Regional Climate Projections</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2018/11/29/hgs-research-highlight-natural-stimuli-calibration-with-fining-direction-regularization-in-an-integrated-hydrologic-model</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710608-LOHI0N5Z9D6BBHXNS98T/Figure+5.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Natural stimuli calibration with fining direction regularization in an integrated hydrologic model</image:title>
      <image:caption>Figure 5. a) Finite element mesh including boundary conditions and material zonation based on the hydrostratigraphic interpretation of the site; b) 365 material zones for calibration of hydraulic conductivity (colouration indicates zone location and not material properties); and c) quadrants to which different fining preferences (shown by arrow directions) for model calibration were assigned.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2018/11/14/the-25th-latornell-conservation-symposium</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:title>Aquanty Blog - The 25th Latornell Conservation Symposium</image:title>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710594-HGM5Q0SNR2VB72ZWOD8H/Latornell_25th_Anniversary_Logo-300x80.png</image:loc>
      <image:title>Aquanty Blog - The 25th Latornell Conservation Symposium</image:title>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710598-DMOJJRPI94PEPSSYA2N8/20181113_145647.jpg</image:loc>
      <image:title>Aquanty Blog - The 25th Latornell Conservation Symposium</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2018/9/18/world-water-tech-north-america-2018</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710582-SF238EM5G22MAHAUTR8P/WWNA_-_Start-Ups_%28logo%29.jpg</image:loc>
      <image:title>Aquanty Blog - World Water-Tech North America 2018</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2018/3/16/45th-iah-conference-in-korea</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710570-VZCA6G9JSGD3BH545ZVS/IAH_2018.jpg</image:loc>
      <image:title>Aquanty Blog - 45th IAH conference in Korea</image:title>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710575-2GPHNSVT3RU29S07HIT7/IAH.jpg</image:loc>
      <image:title>Aquanty Blog - 45th IAH conference in Korea</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2018/3/13/hgs-research-highlight-understanding-the-water-balance-paradox-in-the-athabasca-river-basin-canada</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710559-X7P2XDXRL744GZBGQS1K/Figure_5.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Understanding the water balance paradox in the Athabasca River Basin, Canada</image:title>
      <image:caption>3-D subsurface model for the Athabasca River Basin.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710563-Q653MPQ2WR7O0QXRH2MF/Figure_8.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Understanding the water balance paradox in the Athabasca River Basin, Canada</image:title>
      <image:caption>a) Spatial distribution of aridity index (AI) and b) Spatial distribution of actual aridity index (AAI) based on long-term steady state simulation results: JA=Jasper; HT=Hinton; WF=Windfall; AT=Athabasca; FM=Fort McMurray; and EA=Embarras Airport sub-basin.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2018/2/22/hgs-research-highlight-analytical-approach-to-estimate-salt-release-from-tailings-sand-hummocks-in-oil-sands-mine-closure</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2018/2/8/hgs-research-highlight-full-coupling-between-the-atmosphere-surface-and-subsurface-for-integrated-hydrologic-simulation</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2018/2/1/hgs-research-highlight-advancing-physically-based-flow-simulations-of-alluvial-systems-through-atmospheric-noble-gases-and-the-novel-37ar-tracer-method</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710530-TAGJ1Y520P4R2AIQTSX4/Adv_figure1.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Advancing Physically-Based Flow Simulations of Alluvial Systems Through Atmospheric Noble Gases and the Novel 37Ar Tracer Method</image:title>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710535-B1LGQL8C4PFESUON86XV/Adv_figure2.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Advancing Physically-Based Flow Simulations of Alluvial Systems Through Atmospheric Noble Gases and the Novel 37Ar Tracer Method</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2018/1/19/hgs-research-highlight-estimating-the-spatial-extent-of-unsaturated-zones-in-heterogeneous-river-aquifer-systems</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710512-HXFCX7TL3X4131LJFOO3/Figure_1.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Estimating the Spatial Extent of Unsaturated Zones in Heterogeneous River-Aquifer Systems</image:title>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710516-DKHG9J5FU5PAXEBAFLOG/Figure_2.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Estimating the Spatial Extent of Unsaturated Zones in Heterogeneous River-Aquifer Systems</image:title>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710520-A9KZ8VD3G1BFC0JVCV9Y/Figure_3.jpg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Estimating the Spatial Extent of Unsaturated Zones in Heterogeneous River-Aquifer Systems</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2017/10/23/hgs-research-highlight-efficient-uncertainty-quantification-in-fully-integrated-surface-and-subsurface-hydrologic-simulations</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710498-8Y1ZVKAM3GUSE49KJ091/Figure_6.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Efficient Uncertainty Quantification in Fully-Integrated Surface and Subsurface Hydrologic Simulations</image:title>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710501-MOLL7MLPY5N9SE3EKKIZ/Figure_7.JPG</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Efficient Uncertainty Quantification in Fully-Integrated Surface and Subsurface Hydrologic Simulations</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2017/10/16/hgs-research-highlight-wetlands-and-flood-mitigation-in-ontario-natural-adaptation-to-extreme-rainfall</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2017/10/6/hgs-research-highlight-limits-of-heat-as-a-tracer-to-quantify-transient-lateral-river-aquifer-exchanges</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710481-4HNWR34AI6NBP0PJ1KYR/Xie_Figure_1.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Limits of heat as a tracer to quantify transient lateral river-aquifer exchanges</image:title>
      <image:caption>Figure 1. Location of the study site adjacent to the Meuse River, monitored wells U5 and U3 (114 and 207 m distance from the river, respectively) and groundwater head contours as measured in April 2006.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710486-KNRVC6OZBCU5SXK6I5LO/Xie_Figure_2.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Limits of heat as a tracer to quantify transient lateral river-aquifer exchanges</image:title>
      <image:caption>Figure 2. Net river-aquifer exchange volume statistics for using hydraulic head and temperature time series in different manners. The left panel shows results when time series were used at individual locations (i.e., 4, 5, 6, 7, 8, 9, 10 m from the river), whereas the right panel includes results when time series were used at specific ranges of locations (e.g., 4-5 m indicates locations at both 4 and 5 m, and 4-6 m indicates locations at 4, 5 and 6 m). In each boxplot, the upper and lower bounds show maximum and minimum values, the top and bottom of the box indicate 75 and 25 percentiles, and the red bar within the box is the median value. The dotted lines show the net exchange volume for the base case model.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2017/9/13/job-notice-intermediatesenior-numerical-modeller-hydrologyhydrogeology</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2017/8/15/hydrogeosphere-korean-short-course-2017</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710465-47XGZ4LQF3FHL172TSLZ/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HydroGeoSphere Korean Short Course 2017</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2017/7/9/australasian-groundwater-conference-2017</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710457-JL8QAXMISW1AX9GPC7KR/image-asset.jpeg</image:loc>
      <image:title>Aquanty Blog - Australasian Groundwater Conference 2017</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2017/6/28/ren-therrien-fellow-of-the-canadian-academy-of-engineering</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2017/6/20/hgs-research-highlight-integrating-hydrological-modelling-data-assimilation-and-cloud-computing-for-real-time-management-of-water-resources</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-08-15</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710446-H7JRFT5PWNM7LTQISJD5/image-asset.jpeg</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT -  Integrating hydrological modelling, data assimilation and cloud computing for real-time management of water resources</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2017/3/15/hydrogeosphere-language-grammar</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710438-2JRC0DB3NDGRVLWB41NE/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HydroGeoSphere Language Grammar</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2017/1/23/job-notice-intermediate-numerical-modeller-hydrogeologyhydrology</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2017/1/9/hgs-user-conference-registration-deadline-january-22-2017</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2017/1/5/hgs-research-highlight-incorporating-surface-water-operations-in-an-integrated-hydrologic-model-model-development-and-application-to-the-lower-republican-river-basin-united-states</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710419-D47ZDJO1VDAPE383Y0XY/Screenshot+2017-01-05+14.02.10.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Incorporating Surface Water Operations in an Integrated Hydrologic Model: Model Development and Application to the Lower Republican River Basin, United States</image:title>
      <image:caption>OASIS lower Republican River model schematic</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/12/19/hgs-research-highlight-combined-analysis-of-time-varying-sensitivity-and-identifiability-indices-to-diagnose-the-response-of-a-complex-environmental-model</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710405-VQ3EVK4RV5R3I12J4DGN/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Combined analysis of time-varying sensitivity and identifiability indices to diagnose the response of a complex environmental model</image:title>
      <image:caption>Schematic of the weighing lysimeter.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710408-3LZAC3NMOCVQX0BUTS29/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Combined analysis of time-varying sensitivity and identifiability indices to diagnose the response of a complex environmental model</image:title>
      <image:caption>Conceptual Model.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/12/19/hgs-research-highlight-on-the-effects-of-preferential-or-barrier-flow-features-on-solute-plumes-in-permeable-porous-media</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710389-D533YSCAVWU9LAPN7JAE/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - On the effects of preferential or barrier flow features on solute plumes in permeable porous media</image:title>
      <image:caption>Steady-state salinity distributions for PFF Cases A, B and C (decreasing variability between the PFF and matrix hydraulic conductivities), and Scenarios 1, 2, 3 and 4 (increasing PFF aperture). PFFs are indicated by transparent white lines.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710395-OU4OEID44CWDOHNQBAK6/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - On the effects of preferential or barrier flow features on solute plumes in permeable porous media</image:title>
      <image:caption>Steady-state salinity distributions for BFF Cases D, E and F (increasing variability between the BFF and matrix hydraulic conductivities), and Scenarios 1, 2, 3 and 4 (increasing BFF aperture). BFFs are indicated by transparent white lines.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/12/5/hgs-research-highlight-american-geophysical-union-2016-fall-meeting</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/11/21/hgs-research-highlight-coupled-surface-and-subsurface-flow-modeling-of-natural-hillslopes-in-the-aburr-valley-medelln-colombia</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710369-FB8MI3QG9U4UR0VJJRR2/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Coupled surface and subsurface flow modeling of natural hillslopes in the Aburrá Valley (Medellín, Colombia)</image:title>
      <image:caption>Modeled natural hillslope: stochastic equivalent porous medium facies in the heterogeneous upper layer (silt and rock blocks) and homogeneous porous medium in the lower layer (saprolite)</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710373-IG76F27622FF114KOQKD/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Coupled surface and subsurface flow modeling of natural hillslopes in the Aburrá Valley (Medellín, Colombia)</image:title>
      <image:caption>Difference in simulated pore-water pressure considering coupled surface-subsurface water flow and only subsurface water flow at the observation point, located 40 cm deep</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/11/21/hgs-research-highlight-characterizing-the-climate-driven-collapses-and-expansions-of-wetland-habitat-networks-with-hydrogeosphere</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2026-01-27</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710356-2B82QTHZSQC9TAKK9X4S/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HGS RESEARCH HIGHLIGHT - Characterizing the climate-driven collapses and expansions of wetland habitat networks with HydroGeoSphere</image:title>
      <image:caption>A wetland landscape in central North Dakota (left) and the associated network (right) created with a graph-theoretical approach. Circles represent nodes (i.e., centroids of wetlands) and lines represent links between nodes that have a distance less than a threshold value or disperse distance of 1000 m.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/11/14/visit-us-at-the-latornell-conservation-symposium</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710348-A4OGTFB0ZGR6OJXXGD27/image-asset.jpeg</image:loc>
      <image:title>Aquanty Blog - Visit us at the Latornell Conservation Symposium</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/11/10/hgs-research-highlight-on-the-value-of-surface-saturated-area-dynamics-mapped-with-thermal-infrared-imagery-for-modeling-the-hillslope-riparian-stream-continuum</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710341-LKTE9V6US3HCQ6T0LYNE/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HGS Research Highlight - On the value of surface saturated area dynamics mapped with thermal infrared imagery for modeling the hillslope-riparian-stream continuum</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/10/2/hgs-research-highlight-large-water-table-response-to-rainfall-in-a-shallow-bedrock-aquifer-having-minimal-overburden-cover</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710331-LEHWYHAHPXNT7II5BA6G/image-asset.jpeg</image:loc>
      <image:title>Aquanty Blog - HGS Research Highlight - Large water-table response to rainfall in a shallow bedrock aquifer having minimal overburden cover</image:title>
      <image:caption>Model domain showing a hydraulic head rise during an infiltration event.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/9/19/hgs-research-highlight-topographic-control-on-groundwater-salinization-due-to-ocean-surge-inundation</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710322-5YNUYBOGKIROYMTOFM6H/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HGS Research Highlight - Topographic control on groundwater salinization due to ocean surge inundation</image:title>
      <image:caption>Schematic illustration of the ocean surge-introduced saltwater infiltration at the surface of a coastal aquifer.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/9/8/hgs-research-highlight-heat-tracer-test-in-an-alluvial-aquifer-field-experiment-and-inverse-modelling</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710312-OCOA7DGLOHKG63VY77VK/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HGS Research Highlight - Heat tracer test in an alluvial aquifer: field experiment and inverse modelling</image:title>
      <image:caption>Two-dimensional K (m/s) tomogram for the lower (a) and upper (b) parts of the aquifer obtained from the inversion of transient temperature responses.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/8/16/algomesh-version-12-released-with-increased-functionality-for-hydrogeosphere</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710303-KJ2H1UJK4SYBEYBND7DV/image-asset.png</image:loc>
      <image:title>Aquanty Blog - AlgoMesh Version 1.2 Released with Increased Functionality for HydroGeoSphere</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/8/8/job-notice-juniorintermediate-numerical-modeller-hydrogeologyhydrology</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/7/4/4th-international-hydrogeosphere-user-conference-registration-open</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710289-ZJYSOC04PUA0POL2FTU8/image-asset.jpeg</image:loc>
      <image:title>Aquanty Blog - 4th International HydroGeoSphere User Conference - Registration Open</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/6/27/upcoming-talk-at-toward-sustainable-groundwater-in-agriculture-conference</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/6/23/excited-to-be-sharing-a-booth-with-ibm-at-the-canadian-water-summit</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710276-1T8P3FN0S5WY4BT4ELIW/image-asset.jpeg</image:loc>
      <image:title>Aquanty Blog - Excited to be sharing a booth with IBM at the Canadian Water Summit!</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/6/2/hgs-research-highlight-solute-transport-processes-in-flow-event-driven-streamaquifer-interaction</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710265-OZ1OS3K96URG8DLX4CZ8/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HGS Research Highlight - Solute transport processes in flow-event-driven stream–aquifer interaction</image:title>
      <image:caption>An example to show variation with distance of (a) stream depth, (b) the concentration of the stream water at different times.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710268-DW2YEDXFBNSQ45VUH3ID/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HGS Research Highlight - Solute transport processes in flow-event-driven stream–aquifer interaction</image:title>
      <image:caption>Variation in the proportion of groundwater in stream discharge with distance for various wave amplitudes.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/5/24/upcoming-talks-at-the-cmwr</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/4/14/the-4th-international-hydrogeosphere-users-conference-has-been-scheduled</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710251-6VOBR9L844CXEJ7I9AK4/image-asset.jpeg</image:loc>
      <image:title>Aquanty Blog - The 4th International HydroGeoSphere Users Conference has been scheduled</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/4/4/post-doctoral-research-opportunity-in-quantitative-hydrologic-science</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/2/18/hgs-parallelization-best-practices</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710231-91B79YMCHNVUD72J1BSC/image-asset.jpeg</image:loc>
      <image:title>Aquanty Blog - HGS Parallelization - Best Practices</image:title>
      <image:caption>Default parallelindx.dat file</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710235-S4UK4HZW6ALU9K1HA8XS/image-asset.jpeg</image:loc>
      <image:title>Aquanty Blog - HGS Parallelization - Best Practices</image:title>
      <image:caption>Sample parallelindx.dat file for parallelization with 6 CPUs</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/2/17/hgs-research-highlight-dual-permeability-modeling-of-tile-drain-management-influences-on-hydrology-and-nutrient-transport-in-macroporous-soil</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/1/29/february-2016-release-now-available</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2016/1/26/leapfrog-hydro-and-hydrogeosphere-case-study</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710208-TZZ92Q52UD1DNI7JZZ6S/CaseStudy.jpg</image:loc>
      <image:title>Aquanty Blog - Leapfrog Hydro and HydroGeoSphere - Case Study</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2015/12/18/webinar-introduction-to-integrated-hydrologic-modelling-with-hydrogeosphere</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2025-02-04</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2015/11/17/hgs-research-highlight-coupled-atmospheric-land-surface-and-subsurface-modeling-exploring-water-and-energy-feedbacks-in-three-dimensions</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710191-VFB48F433JFLCFPE62P9/image-asset.png</image:loc>
      <image:title>Aquanty Blog - HGS Research Highlight -  Coupled atmospheric, land surface, and subsurface modeling: Exploring water and energy feedbacks in three-dimensions</image:title>
      <image:caption>HGS-ABL model domain.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2015/11/4/hgs-research-highlight-a-simple-iterative-method-for-estimating-evapotranspiration-with-integrated-surfacesubsurface-models</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710176-WU9UGCWX0ZXCJ3QOF88Q/image-asset.jpeg</image:loc>
      <image:title>Aquanty Blog - HGS Research Highlight - A simple iterative method for estimating evapotranspiration with integrated surface/subsurface models</image:title>
      <image:caption>Schematic of water balance in upstream and downstream watersheds</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2015/10/21/hgs-research-highlight-an-exploration-of-coupled-surface-subsurface-solute-transport-in-a-fully-integrated-catchment-model</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710166-PWHW0TZNUUR0XVLHM6NR/image-asset.jpeg</image:loc>
      <image:title>Aquanty Blog - HGS Research Highlight - An exploration of coupled surface-subsurface solute transport in a fully integrated catchment model</image:title>
      <image:caption>Coupling surface and subsurface water flow is one of the strengths of fully integrated hydrological codes such as HydroGeoSphere (HGS). Following the coupling of surface-subsurface water flow, is coupling of surface-subsurface solute transport, although this subject has received less attention in the literature. Previous studies have focused on coupled surface-subsurface solute transport at small scales, with simple geometric domains, and have not utilised many different field data sources. The purpose of this study was to use HGS to demonstrate the inclusion of both flow and solute transport in a fully integrated 3D catchment model, where field measurements of both water flow and solute transport (as dissolved organic carbon) were available for the Lehstenbach catchment in southeast Germany. As with water flow, solute transport between the surface and subsurface is sensitive to the numerical implementation and model parameters that govern the surface-subsurface connection. We performed a sensitivity analysis to examine the effects of different solute transport conditions at the surface-subsurface boundary (i.e. advective solute exchange only, advection plus diffusion, and advection plus full hydrodynamic dispersion), as well as different subsurface dispersivities, on modelled transport results. The results show that while including solutes in an integrated model can be beneficial for gauging model behaviour, there are challenges in constraining the non-uniqueness of the surface-subsurface solute transport solution and in determining the influence of dispersion across the surface-subsurface interface. This work highlights the importance of the combination of field and modelling investigations when considering surface-subsurface solute transport.  The HGS Research Highlight Series features recent publications and projects completed using HGS. If you have recently completed a project using HGS and would like to see it featured here please contact sberg@aquanty.com.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2015/10/1/october-2015-release-now-available</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2015/9/21/hgs-research-highlight-holding-and-allen-2015</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710149-BCZLQDD9JJX093UT76IE/image-asset.jpeg</image:loc>
      <image:title>Aquanty Blog - HGS Research Highlight - Holding and Allen 2015</image:title>
      <image:caption>Concentration distribution after inundation; the white lines represent geological heterogeneity.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2015/8/25/changes-to-hgs-licensing-and-distribution</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2015/8/5/hgs-research-highlight-schilling-et-al-2014</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710126-TVYCPFVAARVRKKVYULEA/Tarim-HGS_study_image_OSchilling-20150805.png</image:loc>
      <image:title>Aquanty Blog - HGS Research Highlight - Schilling et al., 2014</image:title>
      <image:caption>Flow Chart of Modelling Process (Images courtesy of the Authors. Satellite Imagery from Google Earth (Digital Globe, 2015)).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2015/6/15/mesh-generation-for-hgs-models-using-algomesh</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710027-LCJSG3V5WH5O3RKC43UR/image-asset.png</image:loc>
      <image:title>Aquanty Blog - Mesh Generation for HGS Models using AlgoMesh</image:title>
      <image:caption>Model Geometry</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710031-CPC9UB855LEV1SEOX9PZ/image-asset.png</image:loc>
      <image:title>Aquanty Blog - Mesh Generation for HGS Models using AlgoMesh</image:title>
      <image:caption>Setting up the outer boundary in AlgoMesh</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710035-KITAPZ0K55BI0IPOT8OY/image-asset.png</image:loc>
      <image:title>Aquanty Blog - Mesh Generation for HGS Models using AlgoMesh</image:title>
      <image:caption>Setting up spline properties</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710038-7IUX1NDDM198MD6QTVSN/image-asset.png</image:loc>
      <image:title>Aquanty Blog - Mesh Generation for HGS Models using AlgoMesh</image:title>
      <image:caption>Specifying the inner portion of the model domain</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710042-N397Q5LRV48FKW4XT4G3/image-asset.png</image:loc>
      <image:title>Aquanty Blog - Mesh Generation for HGS Models using AlgoMesh</image:title>
      <image:caption>Defining streamlines</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710046-99EHDAHZ2KO2NOPYJPIB/image-asset.png</image:loc>
      <image:title>Aquanty Blog - Mesh Generation for HGS Models using AlgoMesh</image:title>
      <image:caption>Parametrising the optimisation</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710061-4UO99KQM7YO0YFLD92IT/mesh1.png</image:loc>
      <image:title>Aquanty Blog - Mesh Generation for HGS Models using AlgoMesh</image:title>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710084-F25UBXCGRTGCZ0I3IP86/mesh2.png</image:loc>
      <image:title>Aquanty Blog - Mesh Generation for HGS Models using AlgoMesh</image:title>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710100-WDNMCWKOA12ZSEXQIXNB/mesh4.png</image:loc>
      <image:title>Aquanty Blog - Mesh Generation for HGS Models using AlgoMesh</image:title>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710092-PKIGUAIYW8QV8EOERA1B/mesh3.png</image:loc>
      <image:title>Aquanty Blog - Mesh Generation for HGS Models using AlgoMesh</image:title>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710077-PJSREH7Y8UKFE65XI289/mesh5.png</image:loc>
      <image:title>Aquanty Blog - Mesh Generation for HGS Models using AlgoMesh</image:title>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710069-RQAWRIAPAK113VIHYNT0/mesh6.png</image:loc>
      <image:title>Aquanty Blog - Mesh Generation for HGS Models using AlgoMesh</image:title>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710113-VFHUX9DOOJSYP07SI6OW/image-asset.png</image:loc>
      <image:title>Aquanty Blog - Mesh Generation for HGS Models using AlgoMesh</image:title>
      <image:caption>Final 2D Mesh</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2015/5/21/visit-us-at-modflow-and-more</loc>
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    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491710007-FCQB0X82BCLR02NJP515/aquanty_booth</image:loc>
      <image:title>Aquanty Blog - Visit us at MODFLOW and More</image:title>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2015/4/7/postdoc-opportunity-in-quantitative-hydrologic-science</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/2015/3/23/integrated-hydrosystem-modelling-irtg-2015-conference</loc>
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    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491709982-AX06T3YP3U00LRNXY24Z/image-asset.jpeg</image:loc>
      <image:title>Aquanty Blog - Integrated Hydrosystem Modelling - IRTG 2015 Conference</image:title>
    </image:image>
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    <loc>https://www.aquanty.com/blog/2015/2/19/welcome-to-the-new-aquantycom</loc>
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    <lastmod>2024-03-14</lastmod>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/category/Climate</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/category/Snow</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
  </url>
  <url>
    <loc>https://www.aquanty.com/blog/category/GW-SW+exchange</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
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  <url>
    <loc>https://www.aquanty.com/blog/category/HGS+Feature</loc>
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    <priority>0.5</priority>
  </url>
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      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - February 2025</image:title>
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      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - January 2025</image:title>
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      <image:title>Events Calendar - Webinar - The impact of SW-GW flow interactions for regional scale simulation of hydraulic heads: application in the south Quebec regional hydro system - Make it stand out</image:title>
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    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-oct-2024</loc>
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    <lastmod>2024-09-24</lastmod>
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      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - October 2024</image:title>
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    <loc>https://www.aquanty.com/events-calendar/setac-north-america-45th-annual-meeting</loc>
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    <lastmod>2024-07-18</lastmod>
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    <loc>https://www.aquanty.com/events-calendar/hgs-pdaf</loc>
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    <lastmod>2024-06-26</lastmod>
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    <loc>https://www.aquanty.com/events-calendar/cacis2024</loc>
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    <lastmod>2024-06-05</lastmod>
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      <image:title>Events Calendar - The Conservation Authority Collaborative Information Sessions (CACIS) - Registration for The Conservation Authority Collaborative Information Sessions (CACIS) is now open!</image:title>
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    <loc>https://www.aquanty.com/events-calendar/physics-based-hydrologic-forecasting</loc>
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    <lastmod>2024-07-02</lastmod>
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    <loc>https://www.aquanty.com/events-calendar/machine-learning-for-flood-and-drought-forecasting</loc>
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    <lastmod>2024-04-12</lastmod>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-dec-2024</loc>
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    <lastmod>2024-11-22</lastmod>
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      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - December 2024</image:title>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-nov-2024</loc>
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      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - November 2024</image:title>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-sep-2024</loc>
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      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - September 2024</image:title>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/geomontreal2024</loc>
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    <lastmod>2024-07-17</lastmod>
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    <loc>https://www.aquanty.com/events-calendar/cwra2024</loc>
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    <lastmod>2024-03-14</lastmod>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/modflow2024</loc>
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    <lastmod>2024-04-11</lastmod>
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      <image:title>Events Calendar - MODFLOW and More 2024 - Conference Registration for MODFLOW and More 2024 “Hydrologic Modeling in a Changing World” is now open!</image:title>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/igc-2024-groundwater-surface-water-interactions</loc>
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    <lastmod>2024-08-06</lastmod>
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      <image:title>Events Calendar - IGC 2024 - 37th Annual Conference of the International Geological Congress - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/iaglr-2024-shared-lakes-one-water-one-health</loc>
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    <lastmod>2024-03-14</lastmod>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/pacific-climate-security-conference</loc>
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    <lastmod>2024-03-14</lastmod>
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      <image:title>Events Calendar - Pacific Climate Security Conference - Climate Change and Security in Western North America - Make it stand out</image:title>
      <image:caption>Dr. Steve Frey</image:caption>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/introducing-the-hydrogeosphere-interface</loc>
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    <lastmod>2024-04-11</lastmod>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-aug-2024</loc>
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      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - August 2024</image:title>
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  <url>
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      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - July 2024</image:title>
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  <url>
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      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - June 2024 - Mak</image:title>
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    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-may-2024</loc>
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      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - May 2024</image:title>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-apr-2024</loc>
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      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - April 2024</image:title>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-mar-2024</loc>
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      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - March 2024 - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-feb-2024</loc>
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      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - February 2024 - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-jan-2024</loc>
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    <lastmod>2024-03-14</lastmod>
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      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - January 2024 - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/webinar-flatten-the-hydrograph</loc>
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    <lastmod>2024-04-11</lastmod>
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      <image:title>Events Calendar - Webinar - Using Wetlands to “Flatten the Hydrograph” - Make it stand out</image:title>
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      <image:title>Events Calendar - Webinar - Using Wetlands to “Flatten the Hydrograph” - Make it stand out</image:title>
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      <image:title>Events Calendar - Webinar - Using Wetlands to “Flatten the Hydrograph” - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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      <image:title>Events Calendar - Webinar - Using Wetlands to “Flatten the Hydrograph” - Make it stand out</image:title>
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    <loc>https://www.aquanty.com/events-calendar/latornell-conservation-symposium-2023</loc>
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    <lastmod>2024-03-14</lastmod>
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      <image:title>Events Calendar - 2023 Latornell Conservation Symposium - "Changing Climates: Our Watershed Moment" - Make it stand out</image:title>
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      <image:title>Events Calendar - 2023 Latornell Conservation Symposium - "Changing Climates: Our Watershed Moment" - Make it stand out</image:title>
      <image:caption>Visit our booth to demo HGSRT!</image:caption>
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      <image:title>Events Calendar - 2023 Latornell Conservation Symposium - "Changing Climates: Our Watershed Moment" - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/webinar-playing-to-strengths-of-hydrogeosphere</loc>
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    <lastmod>2024-03-14</lastmod>
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      <image:title>Events Calendar - Webinar - Playing to the Strengths of HydroGeoSphere: Unleashing Digital Twins for Integrated Hydrologic Modelling - Make it stand out</image:title>
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  <url>
    <loc>https://www.aquanty.com/events-calendar/mfga-conference-2023</loc>
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    <lastmod>2024-03-14</lastmod>
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      <image:title>Events Calendar - 2023 MFGA Conference - Regenerative Agriculture: Building the Legacy - Make it stand out</image:title>
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      <image:title>Events Calendar - 2023 MFGA Conference - Regenerative Agriculture: Building the Legacy - Make it stand out</image:title>
      <image:caption>Visit our booth to demo the MFGA Aquanty Water Forecast Tool!</image:caption>
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  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/webinar-data-space-inversion</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/fd587c53-4a5d-40e1-886a-07afa82bdcb2/banner.JPG</image:loc>
      <image:title>Events Calendar - Webinar - Data Space Inversion: History-Matching, Uncertainty Analysis and Data Worth Assessment for Complex Models - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/de44b69e-475c-4e93-b141-b13e0f73aa98/doherty.jpg</image:loc>
      <image:title>Events Calendar - Webinar - Data Space Inversion: History-Matching, Uncertainty Analysis and Data Worth Assessment for Complex Models - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/59828f39-e21d-471d-8c8c-a55654b63b6e/photo.png</image:loc>
      <image:title>Events Calendar - Webinar - Data Space Inversion: History-Matching, Uncertainty Analysis and Data Worth Assessment for Complex Models - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/233ffd79-fd6b-4f62-b2a0-3a1162a8fe52/image.JPG</image:loc>
      <image:title>Events Calendar - Webinar - Data Space Inversion: History-Matching, Uncertainty Analysis and Data Worth Assessment for Complex Models - Make it stand out</image:title>
      <image:caption>Eager to learn more about Data Space Inversion? Review this short tutorial hosted by the Groundwater Modelling Decision Support Initiative (GDMSI).</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/lateral-and-vertical-saltwater-intrusion-into-a-coastal-aquifer</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/2c86d3f3-b1e5-47ce-ab25-5cec4f1b9f5a/research+highlights_final_v2.PNG</image:loc>
      <image:title>Events Calendar - Lateral and vertical saltwater intrusion into a coastal aquifer: Impacts of sea-level rise, storm surges, coastal flooding, and tides - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/90244d00-b6e9-4086-947e-2d076a2cbfd6/nicole+leroux.jpg</image:loc>
      <image:title>Events Calendar - Lateral and vertical saltwater intrusion into a coastal aquifer: Impacts of sea-level rise, storm surges, coastal flooding, and tides - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-dec-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1633621404661-MVY55XRE503MQTPJ6K2F/HGS+training+sessions.PNG</image:loc>
      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - December 2023 - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-nov-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1633621404661-MVY55XRE503MQTPJ6K2F/HGS+training+sessions.PNG</image:loc>
      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - November 2023 - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-sep-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1633621404661-MVY55XRE503MQTPJ6K2F/HGS+training+sessions.PNG</image:loc>
      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - September 2023 - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-aug-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1633621404661-MVY55XRE503MQTPJ6K2F/HGS+training+sessions.PNG</image:loc>
      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - August 2023 - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-jul-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1633621404661-MVY55XRE503MQTPJ6K2F/HGS+training+sessions.PNG</image:loc>
      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - July 2023 - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-tecplot-training-session</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/0dd40f47-1965-4db9-ae07-0fbddaa77926/banner.JPG</image:loc>
      <image:title>Events Calendar - Visualizing HGS Output with Tecplot 360 - Training Session - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/hgs-short-course-oct-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-04-11</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1633626852869-AL1JSMY7R618Q7VYE483/HGS+training+sessions.PNG</image:loc>
      <image:title>Events Calendar - Integrated Hydrologic Modeling with HydroGeoSphere - Short Course - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/2023-cwra</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/175a84b5-3e85-40ae-88e8-13b0b2a484aa/banner.JPG</image:loc>
      <image:title>Events Calendar - CWRA 2023 National Conference - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/cwra-training-session</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/175a84b5-3e85-40ae-88e8-13b0b2a484aa/banner.JPG</image:loc>
      <image:title>Events Calendar - CANCELLED Training Session at CWRA Halifax - Integrated Hydrologic Modelling using HydroGeoSphere - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/webinar-model-convergence-optimizing-runtimes</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/ca8e12a2-79ae-4d5f-bde7-e7f9564d6cdc/banner.JPG</image:loc>
      <image:title>Events Calendar - Webinar - Model Convergence and Optimizing Runtimes with HydroGeoSphere - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/webinar-climate-change-analysis-hydrogeosphere</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/fa10784b-ce54-420c-9779-1d0b5bd9c36c/banner.JPG</image:loc>
      <image:title>Events Calendar - Webinar - Climate Change Impact Analysis using HydroGeoSphere - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/saw-conference-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/2414f385-e734-466f-b8b1-645b13d23cb1/banner.JPG</image:loc>
      <image:title>Events Calendar - 15th Annual Saskatchewan Association of Watersheds Conference - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/dda21809-59b4-4209-afaa-f3724215ef3d/Picture2.png</image:loc>
      <image:title>Events Calendar - 15th Annual Saskatchewan Association of Watersheds Conference - Make it stand out</image:title>
      <image:caption>Visit our booth to demo the MFGA Aquanty Water Forecast Tool!</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/nhsayltlvmbaovmxn0alkdb727qlo0</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/32643bbb-ab71-4b49-920c-beb33d36e190/banner.JPG</image:loc>
      <image:title>Events Calendar - SCAS Conference: Canada1Water framework for national scale hydrological modelling - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/40831b03-272c-4ec5-b246-93bc3057ec19/kessele.jpg</image:loc>
      <image:title>Events Calendar - SCAS Conference: Canada1Water framework for national scale hydrological modelling - Make it stand out</image:title>
      <image:caption>Eric Kessel, M.Sc, P.Geo. - Hydrogeologist</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/catiq-connect-innovations-in-canadian-flood-modelling-panel-discussion</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/4eb0a1ca-8388-470f-b253-28b4801a44bd/banner.JPG</image:loc>
      <image:title>Events Calendar - CatIQ Connect - Innovations in Canadian Flood Modelling (Panel Discussion) - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/700b3db8-d886-4dac-9362-6bdf4d18b7f0/frey.jpg</image:loc>
      <image:title>Events Calendar - CatIQ Connect - Innovations in Canadian Flood Modelling (Panel Discussion) - Make it stand out</image:title>
      <image:caption>Steven Frey, PhD - Senior Scientist</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/d0eb4277-6b19-4977-a5fd-2dc87a7a6b1d/panel.JPG</image:loc>
      <image:title>Events Calendar - CatIQ Connect - Innovations in Canadian Flood Modelling (Panel Discussion) - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-jan-2023-w4289-jgldt-wkcr3-n3a5c-z54g2</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1633621404661-MVY55XRE503MQTPJ6K2F/HGS+training+sessions.PNG</image:loc>
      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - June 2023 - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-jan-2023-w4289-jgldt</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1633621404661-MVY55XRE503MQTPJ6K2F/HGS+training+sessions.PNG</image:loc>
      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - Mar 2023 - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-jan-2023-w4289</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1633621404661-MVY55XRE503MQTPJ6K2F/HGS+training+sessions.PNG</image:loc>
      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - Feb 2023 - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-jan-2023</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1633621404661-MVY55XRE503MQTPJ6K2F/HGS+training+sessions.PNG</image:loc>
      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - Jan 2023 - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/maw-conference-2022</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/9a38978f-ae09-4e19-ab1a-2525f70e3b29/banner.jpg</image:loc>
      <image:title>Events Calendar - 2022 Manitoba Watersheds Conference - Building Resilient Watersheds - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/dda21809-59b4-4209-afaa-f3724215ef3d/Picture2.png</image:loc>
      <image:title>Events Calendar - 2022 Manitoba Watersheds Conference - Building Resilient Watersheds - Make it stand out</image:title>
      <image:caption>Visit our booth to demo the MFGA Aquanty Water Forecast Tool!</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/mfga-conference-2022</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/2011d5e4-6f19-42e3-97ad-55c90f8150d0/banner.PNG</image:loc>
      <image:title>Events Calendar - 2022 MFGA Conference &amp;amp; AGM - Regenerative Agriculture - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/dda21809-59b4-4209-afaa-f3724215ef3d/Picture2.png</image:loc>
      <image:title>Events Calendar - 2022 MFGA Conference &amp;amp; AGM - Regenerative Agriculture - Make it stand out</image:title>
      <image:caption>Visit our booth to demo the MFGA Aquanty Water Forecast Tool!</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-sept-2022-acr38</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1633621404661-MVY55XRE503MQTPJ6K2F/HGS+training+sessions.PNG</image:loc>
      <image:title>Events Calendar - Intro to HydroGeoSphere Training Session - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/latornell-conservation-symposium-2022</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/59ec0cda-0e08-472f-9685-3fff4dc395c7/Latornell-Logo-Refresh-20th-REV.jpg</image:loc>
      <image:title>Events Calendar - 2022 Latornell Conservation Symposium - "Re-imagining Conservation" - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/af9fc3bf-f7bd-4e13-9df8-108b60185492/HGSRT-interface.png</image:loc>
      <image:title>Events Calendar - 2022 Latornell Conservation Symposium - "Re-imagining Conservation" - Make it stand out</image:title>
      <image:caption>Visit our booth to demo HGSRT!</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/d768d739-94e7-4521-8175-f25c7d535947/Latornell_2022_Re-Imagining_Conservation_Logo.jpg</image:loc>
      <image:title>Events Calendar - 2022 Latornell Conservation Symposium - "Re-imagining Conservation" - Make it stand out</image:title>
      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://www.aquanty.com/events-calendar/intro-to-hydrogeosphere-training-session-free-to-attend-dec-2022</loc>
    <changefreq>monthly</changefreq>
    <priority>0.5</priority>
    <lastmod>2024-03-14</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1633621404661-MVY55XRE503MQTPJ6K2F/HGS+training+sessions.PNG</image:loc>
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      <image:title>Download</image:title>
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      <image:title>Edward A. Sudicky - Aquanty Inc.</image:title>
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      <image:title>Hyoun-Tae Hwang - Aquanty Inc.</image:title>
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      <image:title>Hyoun-Tae Hwang - Aquanty Inc.</image:title>
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      <image:title>Brayden McNeill - Aquanty Inc.</image:title>
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      <image:title>Professor W. Richard Peltier - Aquanty Inc.</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491648666-6908AN0OZM1QZXKAJ177/image-asset.jpeg</image:loc>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491658941-NXUA2YQ7OR5ONURW8U60/miller.jpg</image:loc>
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  <url>
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    <lastmod>2026-02-25</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1617022703447-Y679HCJ6PNKPRBBUO4S9/install+folder.PNG</image:loc>
      <image:title>Guide for New Users</image:title>
      <image:caption>The HGS Installation Folder - [C:\Program_Files\HydroGeoSphere]</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1616091570925-30NS0QZ39AXXSFBCT4II/sample+grok.png</image:loc>
      <image:title>Guide for New Users</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1617022821510-4RYFRHWJEC0UFSZWTKLP/after+grok.png</image:loc>
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      <image:caption>The model project folder and command line after running GROK.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491767117-3ICWGDE1XNHNYWMKLE65/error3.png</image:loc>
      <image:title>Guide for New Users</image:title>
      <image:caption>Copy the hgs.lic license file to the installation directory.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491767121-790GMPMDB6KCU4RGL5DW/image-asset.png</image:loc>
      <image:title>Guide for New Users</image:title>
      <image:caption>Copy and paste the DLL files into the working directory.</image:caption>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491767125-WEPRUXNSZZ8MC9KCMORS/overlandFlow.png</image:loc>
      <image:title>Guide for New Users</image:title>
      <image:caption>Open tecplot, and drag and drop the abdulo.olf.dat file. This is the output for the overland flow portion of the simulation. Change the output to LogDepth to show the depth of overland flow.</image:caption>
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    <image:image>
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      <image:title>Guide for New Users</image:title>
      <image:caption>Open tecplot, and drag and drop the abdulo.pm.dat file. This is the output for the porous medium flow portion of the simulation. Change the output to Sat to show the soil saturation.</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1617022703447-Y679HCJ6PNKPRBBUO4S9/install+folder.PNG</image:loc>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491767130-WZ7E5J31S9TVPTFFE3DJ/pmflow.png</image:loc>
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      <image:title>Steven Frey - Aquanty Inc.</image:title>
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    <lastmod>2026-02-06</lastmod>
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    <lastmod>2025-07-30</lastmod>
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      <image:title>Diana Zhang - Aquanty Inc.</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491652435-J8EHXIR0CQPR6AOCV4PZ/Zhang.jpg</image:loc>
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    <lastmod>2025-07-30</lastmod>
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    <lastmod>2025-07-30</lastmod>
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    <lastmod>2025-07-30</lastmod>
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      <image:title>René Therrien - Aquanty Inc.</image:title>
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    <loc>https://www.aquanty.com/kessel</loc>
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    <priority>0.75</priority>
    <lastmod>2025-07-30</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491755670-UODZRBXGLPGQUA8PWDLD/kessele.jpg</image:loc>
      <image:title>Eric Kessel - Aquanty Inc.</image:title>
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    <lastmod>2025-07-30</lastmod>
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      <image:title>Andre R Erler - Aquanty Inc.</image:title>
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      <image:title>Andre R Erler - Aquanty Inc.</image:title>
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    <lastmod>2025-12-11</lastmod>
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      <image:title>Steve Berg - Aquanty Inc.</image:title>
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    <image:image>
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      <image:title>Steve Berg - Aquanty Inc.</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491739741-E2C0X7VX4K12IQB1RWF3/image-asset.png</image:loc>
      <image:title>Steve Berg - Aquanty Inc.</image:title>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491739700-E2RN2K4XM7IXA0S2R83Z/berg.jpg</image:loc>
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    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491739704-U4YE9NBWREVD0TM1EAZF/image-asset.jpeg</image:loc>
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    <image:image>
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  <url>
    <loc>https://www.aquanty.com/downloaddynamic</loc>
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    <lastmod>2025-08-07</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/604a720da3d5371bee6b737d/1615491779814-X0113B9DX6R9H47ANDD5/hgs.jpg</image:loc>
      <image:title>Download-Dynamic</image:title>
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    <image:image>
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      <image:caption>Whatever it is, the way you tell your story online can make all the difference.</image:caption>
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