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Filters: partyWithName: Lukasz M Niemoczynski (X) > partyWithName: U.S. Geological Survey - ScienceBase (X)

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Digital flood-inundation maps for coastal communities within Monmouth County in New Jersey were created by water surfaces generated by an Advanced Circulation hydrodynamic (ADCIRC) and Simulating Waves Nearshore (SWAN) model from the Federal Emergency Management Agency (FEMA) Region II coastal analysis and mapping study (Federal Emergency Management Agency, 2014). Six synthetic modeled tropical storm events from a library of 159 events were selected based on parameters including landfall location or closest approach location, maximum wind speed, central pressure, and radii of winds. Two storm events were selected for the tide gage providing two "scenarios" and accompanying inundation-map libraries. The contents...
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Digital flood-inundation maps for coastal communities within Cape May County in New Jersey were created by water surfaces generated by an Advanced Circulation hydrodynamic (ADCIRC) and Simulating Waves Nearshore (SWAN) model from the Federal Emergency Management Agency (FEMA) Region II coastal analysis and mapping study (Federal Emergency Management Agency, 2014). Six synthetic modeled tropical storm events from a library of 159 events were selected based on parameters including landfall location or closest approach location, maximum wind speed, central pressure, and radii of winds. Two storm events were selected for the tide gage providing two "scenarios" and accompanying inundation-map libraries. The contents...
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This dataset contains measured current velocity during March 1 to May 2, 2019, at eleven locations along the Chincoteague Living Shoreline, Virginia.
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Digital flood-inundation maps for coastal communities within Ocean County in New Jersey were created by water surfaces generated by an Advanced Circulation hydrodynamic (ADCIRC) and Simulating Waves Nearshore (SWAN) model from the Federal Emergency Management Agency (FEMA) Region II coastal analysis and mapping study (Federal Emergency Management Agency, 2014). Six synthetic modeled tropical storm events from a library of 159 events were selected based on parameters including landfall location or closest approach location, maximum wind speed, central pressure, and radii of winds. Two storm events were selected for the tide gage providing two "scenarios" and accompanying inundation-map libraries. The contents of...
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Digital flood-inundation maps for coastal communities within Atlantic County in New Jersey were created by water surfaces generated by an Advanced Circulation hydrodynamic (ADCIRC) and Simulating Waves Nearshore (SWAN) model from the Federal Emergency Management Agency (FEMA) Region II coastal analysis and mapping study (Federal Emergency Management Agency, 2014). Six synthetic modeled tropical storm events from a library of 159 events were selected based on parameters including landfall location or closest approach location, maximum wind speed, central pressure, and radii of winds. Two storm events were selected for the tide gage providing two "scenarios" and accompanying inundation-map libraries. The contents...
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Digital flood-inundation maps for coastal communities within Cumberland County in New Jersey were created by water surfaces generated by an Advanced Circulation hydrodynamic (ADCIRC) and Simulating Waves Nearshore (SWAN) model from the Federal Emergency Management Agency (FEMA) Region II coastal analysis and mapping study (Federal Emergency Management Agency, 2014). Six synthetic modeled tropical storm events from a library of 159 events were selected based on parameters including landfall location or closest approach location, maximum wind speed, central pressure, and radii of winds. Two storm events were selected for the tide gage providing two "scenarios" and accompanying inundation-map libraries. The contents...


map background search result map search result map Field observation of current velocities (2019) along the Chincoteague Living Shoreline, Virginia Synthetic storm-driven flood-inundation grids for coastal communities along the Atlantic Ocean and the Manasquan River and adjacent to the Manasquan tide gage from Spring Lake to Manasquan, NJ Synthetic storm-driven flood-inundation grids for coastal communities along the Delaware Bay and adjacent to the Bivalve tide gage from Maurice River Township to Lawrence Township, NJ Synthetic storm-driven flood-inundation grids for coastal communities along the Barnegat Bay and adjacent to the Ship Bottom tide gage from Stafford Township to Beach Haven, NJ Synthetic storm-driven flood-inundation grids for coastal communities along the Mullica River to Absecon Bay and adjacent to the Absecon tide gage from Port Republic to Pleasantville, NJ Synthetic storm-driven flood-inundation grids for coastal communities along the Townsend Channel to Ingram Thorofare and adjacent to the Avalon tide gage from Sea Isle City to Avalon, NJ Synthetic storm-driven flood-inundation grids for coastal communities along the Atlantic Ocean and the Manasquan River and adjacent to the Manasquan tide gage from Spring Lake to Manasquan, NJ Synthetic storm-driven flood-inundation grids for coastal communities along the Townsend Channel to Ingram Thorofare and adjacent to the Avalon tide gage from Sea Isle City to Avalon, NJ Synthetic storm-driven flood-inundation grids for coastal communities along the Mullica River to Absecon Bay and adjacent to the Absecon tide gage from Port Republic to Pleasantville, NJ Synthetic storm-driven flood-inundation grids for coastal communities along the Barnegat Bay and adjacent to the Ship Bottom tide gage from Stafford Township to Beach Haven, NJ Synthetic storm-driven flood-inundation grids for coastal communities along the Delaware Bay and adjacent to the Bivalve tide gage from Maurice River Township to Lawrence Township, NJ Field observation of current velocities (2019) along the Chincoteague Living Shoreline, Virginia