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New England Water Science Center

Welcome to the USGS New England Water Science Center. We provide timely and reliable information to Federal, State, Tribal, and local stakeholders on the water resources of Connecticut, Maine, Massachusetts, New Hampshire, Rhode Island, and Vermont. Our data help safeguard human and wildlife health, public safety, and environmental sustainability.

For assistance, contact us on our Connect page.

News

Crest-Stage Gages in Vermont Record High Peaks in Flash Flood Events

Crest-Stage Gages in Vermont Record High Peaks in Flash Flood Events

Extreme Low Flows Less Common with Warmer Winters and Wetter Summers

Extreme Low Flows Less Common with Warmer Winters and Wetter Summers

40 Years of Presenting Cape Cod Water Science

40 Years of Presenting Cape Cod Water Science

Publications

Water-quality monitoring strategy for Mount Hope Bay and the Taunton River Estuary, southeastern Massachusetts

The U.S. Geological Survey, in cooperation with the Massachusetts Department of Environmental Protection (MassDEP), began a study in 2018 to develop a water-quality monitoring strategy (WQMS) for Mount Hope Bay and the Taunton River Estuary in southeastern Massachusetts. MassDEP is interested in water-quality data in Mount Hope Bay and the Taunton River Estuary to characterize current water-qualit
Authors
David S. Armstrong

Estimated reductions in phosphorus loads from removal of leaf litter in the Lake Champlain drainage area, Vermont

Excess nutrient loading and other factors are driving eutrophication and other negative effects on water-quality conditions in Lake Champlain and other receiving waters in Vermont. Two common best management practices were evaluated to determine how these practices can be optimized by targeting maintenance and operation to align better with seasonally driven needs, specifically to help municipalit
Authors
Jason R. Sorenson, James M. Pease, Jeremy K. Foote, Ann T. Chalmers, David H. Ainley, Clayton J. Williams

Low-flow period seasonality, trends, and climate linkages across the United States

Low-flow period properties, including timing, magnitude, and duration, influence many key processes for water resource managers and ecosystems. We computed annual low-flow period duration and timing metrics from 1951 to 2020 for 1032 conterminous United States (CONUS) streamgages and analyzed spatial patterns, trends through time, and relationships to climate. Results show northwestern and eastern
Authors
Caelan Simeone, Gregory J. McCabe, Jory Seth Hecht, John C. Hammond, Glenn A. Hodgkins, Carolyn G. Olson, Michael Wieczorek, David M. Wolock

Science

July 2023 Flood in Vermont

From July 9 through July 12, 2023, 3 to 9 inches of rain fell within 48 hours across the state of Vermont, causing catastrophic flooding and millions of dollars in damage. The high amount of rain caused several rivers to peak at record levels, in some cases exceeding records set during Tropical Storm Irene in 2011.
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July 2023 Flood in Vermont

From July 9 through July 12, 2023, 3 to 9 inches of rain fell within 48 hours across the state of Vermont, causing catastrophic flooding and millions of dollars in damage. The high amount of rain caused several rivers to peak at record levels, in some cases exceeding records set during Tropical Storm Irene in 2011.
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Continuous Water Quality Monitoring in the Norwalk River Estuary

The U.S. Geological Survey (USGS), in cooperation with the U.S. Environmental Protection Agency Long Island Sound Study (LISS), is investigating how excess nutrients and low dissolved oxygen affect the water-quality of the lower portion of the Norwalk River Harbor.
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Continuous Water Quality Monitoring in the Norwalk River Estuary

The U.S. Geological Survey (USGS), in cooperation with the U.S. Environmental Protection Agency Long Island Sound Study (LISS), is investigating how excess nutrients and low dissolved oxygen affect the water-quality of the lower portion of the Norwalk River Harbor.
Learn More

Delineating High-Resolution Urban Drainage Systems for Stormwater Management in the Neponset River Watershed

The natural environment and manmade infrastructure must be considered when characterizing hydrology and water quality in urban watersheds. This requirement is critical in stormwater management, which must account for how water flows above ground and underground through stormwater infrastructure. The U.S. Geological Survey (USGS), with support from the U.S. Environmental Protection Agency (EPA), is...
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Delineating High-Resolution Urban Drainage Systems for Stormwater Management in the Neponset River Watershed

The natural environment and manmade infrastructure must be considered when characterizing hydrology and water quality in urban watersheds. This requirement is critical in stormwater management, which must account for how water flows above ground and underground through stormwater infrastructure. The U.S. Geological Survey (USGS), with support from the U.S. Environmental Protection Agency (EPA), is...
Learn More
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