Projected groundwater emergence and shoaling along the U.S. North Eastern coasts

Description

Groundwater emergence and shoaling extents are derived from water table depth GeoTIFFs, which are calculated as steady-state groundwater model heads subtracted from high-resolution topographic digital elevation model (DEM) land surface elevations. Results are provided as image services of water table depth in specific depth ranges (lt 0 m, 0 m, 1 m, 2 m, 3-5 m, gt 5 m). Scenarios include: Kzell0p1_slr0p00m, Kzell0p1_slr0p25m, Kzell0p1_slr0p50m, Kzell0p1_slr1p00m, Kzell0p1_slr1p50m, Kzell0p1_slr2p00m, Kzell0p1_slr2p50m, Kzell0p1_slr3p00m, Kzell1_slr0p00m, Kzell1_slr0p25m, Kzell1_slr0p50m, Kzell1_slr1p00m, Kzell1_slr1p50m, Kzell1_slr2p00m, Kzell1_slr2p50m, Kzell1_slr3p00m, Kzell10_slr0p00m, Kzell10_slr0p25m, Kzell10_slr0p50m, Kzell10_slr1p00m, Kzell10_slr1p50m, Kzell10_slr2p00m, Kzell10_slr2p50m, Kzell10_slr3p00m.

Resources

Name Format Description Link
23 Each image service displays a class for the SLR with hydraulic conductivity multipliers of 0.1, 1, or 10. https://geopub.epa.gov/ArcGIS/rest/services/OLEM_WTD

Tags

  • environment
  • sea level rise
  • delaware
  • effects of climate change
  • physical habitats and geomorphology
  • groundwater flow
  • new hampshire
  • virginia
  • united states
  • mathematical modeling
  • earth sciences
  • beaches
  • maine
  • new york
  • new jersey
  • pennsylvania
  • connecticut
  • climate change
  • maryland
  • sea-level change
  • washington dc
  • water
  • water depth
  • 020:072
  • ground water
  • sea level change
  • rhode island
  • floods
  • hazards planning
  • massachusetts

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