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Scientific information, when reliably obtained and wisely applied, can strengthen our efforts to build resilient coastal communities before storms strike, and guide our response and recovery strategies after landfall. Documenting the height, extent, and timing of overland storm tide and wave dynamics across natural and man-made landscapes, is critical for improved storm-surge modeling for floodplain mapping and real-time forecasting. This leads to better planning, more effective early warning of storm-driven flooding, and strengthening of coastal resilience. The USGS Surge, Wave, and Tide Hydrodynamics (SWaTH) Network developed for the Northeastern Atlantic coast provides critical information on nearshore storm...
Introduction Ongoing efforts to improve the health of New York's South Shore Estuary Reserve (SSER) require continuously recorded water-quality data to understand the short-term effects of stormwater runoff and other pollution sources. To document the diel and tidal variability of water quality in the western bays of the SSER, the USGS monitors select physical and chemical parameters at two sites within the SSER. One site, station 01310740 on Reynolds Channel at Point Lookout, is near the estuary mouth and operated in cooperation with the New York State Department of Environmental Conservation (NYSDEC) and Town of Hempstead Department of Conservation & Waterways. The second, station 01311143...
Categories: Data,
Project;
Types: Downloadable,
Map Service,
OGC WFS Layer,
OGC WMS Layer,
Shapefile;
Tags: Coastal Science,
Coastal Science,
Cooperative Water Program,
New York,
Reynolds Channel, Hog Island Channel, Long Island, All tags...
Stormwater,
Stormwater,
Stormwater,
Surface-Water Quality Monitoring,
Surface-Water Quality Monitoring,
Surface-Water-Quality Monitoring,
Tide and Wave Hydrodynamics,
Tide and Wave Hydrodynamics,
Tide and Wave Hydrodynamics,
USGS New York Water Science Center,
WSC,
Water Quality,
Water Quality,
Water Quality,
Water Quality,
Water quality, Fewer tags
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