arc hydro groundwater

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ARC HYDRO GROUNDWATER Data Model for Managing Hydrogeologic Data Gil Strassberg – Aquaveo Norm Jones – Aquaveo/BYU David Maidment – UT Austin

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Arc Hydro

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  • ARC HYDRO GROUNDWATER Data Model for Managing Hydrogeologic Data

    Gil Strassberg Aquaveo

    Norm Jones Aquaveo/BYU David Maidment UT Austin

  • Background

  • What is Arc Hydro?

    Data models (geodatabase designs): Best GIS practices in a specific field. Terminology, common language. Standard.

    Tools surface water, groundwater. Community user community advances best

    practices.

  • Arc Hydro Data Model

    Arc Hydro Framework

    Surface water components

    Network

    Groundwater components

    Boreholes Drainage

    Hydrography

    Channel

    Hydrostratigraphy

    Geology

    Simulation

    Temporal

    General model for representing water resources, including surface water components and groundwater components centered on a common framework

  • Arc Hydro GW Data Model

  • Framework

    1

    **

    1

    *

    1

    Well1

    Aquifer

    MonitoringPoint

    WaterLine Watershed

    TimeSeries

    Waterbody

    AquiferHydroIDHydroCodeNameHGUIDFType

    WellHydroIDHydroCodeLandElevWellDepthAquiferIDAqCodeHGUIDFType

    HydroIDHydroCodeNameJunctionIDFType

    MonitoringPoint

    TimeSeriesFeatureIDVarIDTsTimeUTCOffsetTsValue

    VariableDefinition

    VarIDVarNameVarDescVarUnits

    SeriesCatalogFeatureIDFeatClassVarIDTsTableStartTimeEndTimeValueCount

    WatershedHydroIDHydroCodeNameDrainIDJunctionIDNextDownIDAreaSqKmFType

    WaterBodyHydroIDHydroCodeNameJunctionIDNextDownIDAreaSqKmFType

    WaterLineHydroIDHydroCodeNameFlowDirNextDownIDLengthKmFType

    WaterPoint

    HydroIDHydroCodeNameJunctionIDFType

    1 HydroIDHydroCodeNameJunctionIDFType

    MonitoringPoint

    WatershedHydroIDHydroCodeNameDrainIDJunctionIDNextDownIDAreaSqKmFType

    WaterBodyHydroIDHydroCodeNameJunctionIDNextDownIDAreaSqKmFType

    WaterLineHydroIDHydroCodeNameFlowDirNextDownIDLengthKmFType

    WaterPoint

    HydroIDHydroCodeNameJunctionIDFType

    Surface water

    1

    **

    TimeSeriesFeatureIDVarIDTsTimeUTCOffff sf etTsValue

    VariableDefinition

    VarIDVarNameVarDescVarUnits

    SeriesCatalogFeatureIDFeatClassVarIDTsTableStartTimeEndTimeValueCount

    Temporal

    1

    *

    1

    AquiferHydroIDHydroCodeNameHGUIDFType

    WellHydroIDHydroCodeLandElevWellDepthAquiferIDAqCodeHGUIDFType

    Groundwater

  • An aquifer is defined by one or a set of polygon features. Aquifer features can be grouped by HGUID.

    Aquifer features

  • Wells are defined as a 2D point in the Well feature class. In the Arc Hydro model we only predefine a set of basic attributes.

    Well Features

    Point datasetWell

    HydroIDHydroCodeLandElevWellDepthAquiferIDAqCodeHGUIDFType

    Wells in the Edwards Aquifer

  • Aquifers and Wells

    Well HydroID = 53

  • TimeSeries - Tabular structure for storing time series values indexed by time, location, and variable.

    FeatureID of the time series = HydroID of the spatial feature (e.g., Well).

    Time Series Views

    Well HydroID = 2791

  • Create view of a variable over a space-time domain.

    Time Series Views

    January 1991

  • Raster Series

    Raster datasets indexed by time Each raster represents a continuous

    surface describing a variable for a given time over an area of interest

    ed by time

    ariable for a givennterest

    1991

    1992

    1993

  • Arc Hydro GW Data Model

  • 3D data is referenced along wells. From depth (top) To depth (bottom).

    Wells and 3D data

    From

    To

  • 146

    128

    -60

    41

    -81

    750

    -140

    -217

    -372

    -433

    Georgetown Fm. (GTWN)

    Cyclic + Marine member (CYMRN)

    Upper confining unit

    Leached + collapsed member (LCCLP)

    Regional dense member (RGDNS)

    Grainstone member (GRNSTN)

    Kirschberg evaporite member (KSCH)

    Dolomitic member (DOLO)

    Lower confining unit, upper Glen Rose (UGLRS)

    Combining the well geometry (x, y) and the vertical data stored in the BoreholeLog table we can describe a set of 3D geometries (x, y, z)

    BoreholeLog table

  • From the tabular data we create 3D features that can be viewed in ArcScene.

    3D features (BorePoints and BoreLines)

  • 3D Borelines

  • Arc Hydro GW Data Model

  • GeoSections

  • 2D Cross Sections (XS2D)

  • Outcrop

    Salt water interface

    Borehole data

    Panel

    Panel divider

    Edit cross sections in ArcMap

    2D Cross Section Editing

  • Transform to 3D GeoSection

  • GeoRasters

  • GeoVolumes

  • Simulation Feature Data Set

  • Simulation Feature Data Set

    Boundary

    HydroID HydroCode Description OriginX OriginY Angle

    1

    Node 2 D

    HydroID HydroCode IJ

    Cell 2 D

    HydroID HydroCode IJ

    Cell 3 D

    HydroID HydroCode IJK

    Node 3 D

    HydroID HydroCode IJK

    1

    1

    1

    1

    1

    *

    CellIndex I J K IJ IJK

  • Tools

    Groundwater Analyst

    Subsurface Analyst

    MODFLOW Analyst

  • Arc Hydro (surface water): Arc Hydro GIS for Water Resources (Maidment, 2002). http://support.esri.com/datamodels

    Arc Hydro Groundwater: Arc Hydro Groundwater GIS for Hydrogeology (Strassberg et al., 2011) http://www.aquaveo.com/archydro-groundwater http://www.archydrogw.com

    ArcGIS Resource Center: http://resources.arcgis.com/archydro

    Resources