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  "Package": "streamDepletr",
  "Title": "Estimate Streamflow Depletion Due to Groundwater Pumping",
  "Version": "0.2.0",
  "Description": "Implementation of analytical models for estimating\nstreamflow depletion due to groundwater pumping, and other\nrelated tools. Functions are broadly split into two groups: (1)\nanalytical streamflow depletion models, which estimate\nstreamflow depletion for a single stream reach resulting from\ngroundwater pumping; and (2) depletion apportionment equations,\nwhich distribute estimated streamflow depletion among multiple\nstream reaches within a stream network. See Zipper et al.\n(2018) <doi:10.1029/2018WR022707> for more information on\ndepletion apportionment equations and Zipper et al. (2019)\n<doi:10.1029/2018WR024403> for more information on analytical\ndepletion functions, which combine analytical models and\ndepletion apportionment equations.",
  "Authors@R": "c(\nperson(\"Sam\", \"Zipper\", email = \"samzipper@ku.edu\", role = c(\"aut\", \"cre\"), comment = c(ORCID = \"0000-0002-8735-5757\")),\nperson(\"Ben\", \"Kerr\", email = \"ben@foundryspatial.com\", role = \"ctb\"),\nperson(\"Tom\", \"Gleeson\", email = \"tgleeson@uvic.ca\", role = \"ctb\", comment = c(ORCID = \"0000-0001-9493-7707\")),\nperson(\"Qiang\", \"Li\", email = \"liqiang1205@gmail.com\", role = \"rev\", comment = c(ORCID = \"0000-0003-2221-6905\")),\nperson(\"Foundry Spatial Ltd.\", role = \"cph\")\n)",
  "Maintainer": "Sam Zipper <samzipper@ku.edu>",
  "Copyright": "Foundry Spatial Ltd.",
  "URL": "https://github.com/FoundrySpatial/streamDepletr",
  "BugReports": "https://github.com/FoundrySpatial/streamDepletr/issues",
  "License": "BSD_3_clause + file LICENSE",
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  "Repository": "https://foundryspatial.r-universe.dev",
  "Date/Publication": "2024-01-10 21:01:34 UTC",
  "RemoteUrl": "https://github.com/foundryspatial/streamdepletr",
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  "Author": "Sam Zipper [aut, cre] (ORCID: <https://orcid.org/0000-0002-8735-5757>),\nBen Kerr [ctb],\nTom Gleeson [ctb] (ORCID: <https://orcid.org/0000-0001-9493-7707>),\nQiang Li [rev] (ORCID: <https://orcid.org/0000-0003-2221-6905>),\nFoundry Spatial Ltd. [cph]",
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      "date": "2020-03-25"
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    "apportion_polygon",
    "apportion_web",
    "apportion_wedge",
    "depletion_max_distance",
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    "hantush",
    "hunt",
    "induce_infiltration_rate",
    "induce_infiltration_time",
    "intermittent_pumping",
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      "name": "discharge_df",
      "title": "Streamflow for Sixmile Creek and Dorn Creek.",
      "object": "discharge_df",
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      ],
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        "Q_m3d",
        "stream"
      ],
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      "tojson": true
    },
    {
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      "title": "Stream network for Sixmile Creek Watershed, Wisconsin, USA. Extracted from US NHDPlus v2.1 national seamless dataset.",
      "object": "stream_lines",
      "class": [
        "sf",
        "data.frame"
      ],
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        "reach",
        "stream",
        "geometry"
      ],
      "rows": 49,
      "table": true,
      "tojson": true
    }
  ],
  "_help": [
    {
      "page": "apportion_inverse",
      "title": "Distribute streamflow depletion within a stream network using inverse distance weighting.",
      "topics": [
        "apportion_inverse"
      ]
    },
    {
      "page": "apportion_polygon",
      "title": "Distribute streamflow depletion within a stream network using web distance Thiessen polygons.",
      "topics": [
        "apportion_polygon"
      ]
    },
    {
      "page": "apportion_web",
      "title": "Distribute streamflow depletion within a stream network using web distance weighting.",
      "topics": [
        "apportion_web"
      ]
    },
    {
      "page": "apportion_wedge",
      "title": "Distribute streamflow depletion between two streams in a wedge-shaped aquifer.",
      "topics": [
        "apportion_wedge"
      ]
    },
    {
      "page": "depletion_max_distance",
      "title": "Calculate maximum distance at which streamflow depletion will exceed a user-selected threshold. Note that this only considers a single stream - depletion apportionment does not occur.",
      "topics": [
        "depletion_max_distance"
      ]
    },
    {
      "page": "discharge_df",
      "title": "Streamflow for Sixmile Creek and Dorn Creek.",
      "topics": [
        "discharge_df"
      ]
    },
    {
      "page": "glover",
      "title": "Streamflow depletion with fully-penetrating stream and no streambed.",
      "topics": [
        "glover"
      ]
    },
    {
      "page": "hantush",
      "title": "Streamflow depletion in partially penetrating stream with semipervious streambed.",
      "topics": [
        "hantush"
      ]
    },
    {
      "page": "hunt",
      "title": "Streamflow depletion in partially penetrating stream with semipervious streambed.",
      "topics": [
        "hunt"
      ]
    },
    {
      "page": "induce_infiltration_rate",
      "title": "Calculate the pumping rate at which pumping will induce infiltration from stream.",
      "topics": [
        "induce_infiltration_rate"
      ]
    },
    {
      "page": "induce_infiltration_time",
      "title": "Calculate the critical time at which stream transitions from gaining to losing.",
      "topics": [
        "induce_infiltration_time"
      ]
    },
    {
      "page": "intermittent_pumping",
      "title": "Streamflow depletion for an intermittent pumping schedule using superposition.",
      "topics": [
        "intermittent_pumping"
      ]
    },
    {
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      "title": "Calculate the distance from a well to each reach within a stream network. This function splits a polyline stream network up into a series of evenly spaced points and calculates the distance from each of those points to a well.",
      "topics": [
        "prep_reach_dist"
      ]
    },
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      "title": "Stream network for Sixmile Creek Watershed, Wisconsin, USA. Extracted from US NHDPlus v2.1 national seamless dataset.",
      "topics": [
        "stream_lines"
      ]
    },
    {
      "page": "streambed_conductance",
      "title": "Estimate streambed conductance.",
      "topics": [
        "streambed_conductance"
      ]
    }
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      "source": "intro-to-streamDepletr.Rmd",
      "filename": "intro-to-streamDepletr.html",
      "title": "Introduction to streamDepletr",
      "author": "Samuel C. Zipper",
      "engine": "knitr::rmarkdown",
      "headings": [
        "Modeling streamflow depletion",
        "Estimating capture fraction",
        "Converting capture fraction to streamflow depletion",
        "Intermittent pumping schedules",
        "Working with real stream networks",
        "Preparing stream and well input data",
        "Integrating analytical models with depletion apportionment equations",
        "References"
      ],
      "created": "2018-06-07 00:50:39",
      "modified": "2023-07-19 18:29:01",
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