Publications
The list below includes official USGS publications and journal articles authored by New England Water Science Center scientists. The USGS Pubs Warehouse link provides access to all USSG publications.
Filter Total Items: 1140
Water resources data for New Hampshire and Vermont, water year 2001 Water resources data for New Hampshire and Vermont, water year 2001
Water-resources data for the 2001 water year for New Hampshire and Vermont consists of stage, discharge, and water quality of streams; contents of lakes and reservoirs; and ground-water levels. This report contains discharge records for 75 gaging stations, stage records for 5 lakes, monthend contents for 2 lakes and reservoirs, water levels for 38 observation wells. Also included are...
Authors
M.F. Coakley, S.L. Ward, Gregory S. Hilgendorf, Richard G. Kiah
Lithogeochemical character of near-surface bedrock in the New England coastal basins Lithogeochemical character of near-surface bedrock in the New England coastal basins
This geographic information system (GIS) data layer shows the generalized lithologic and geochemical, termed lithogeochemical, character of near-surface bedrock in the New England Coastal Basin (NECB) study area of the U.S. Geological Survey's National Water Quality Assessment (NAWQA) Program. The area encompasses 23,000 square miles in western and central Maine, eastern Massachusetts...
Authors
Gilpin R. Robinson, Joseph D. Ayotte, Denise L. Montgomery, Leslie A. DeSimone
Observed and predicted pier scour in Maine Observed and predicted pier scour in Maine
Pier-scour and related data were collected and analyzed for nine high river flows at eight bridges across Maine from 1997 through 2001. Six bridges had multiple piers. Fifteen of 23 piers where data were measured during a high flow had observed maximum scour depths ranging from 0.5 feet (ft) to 12.0 ft. No pier scour was observed at the remaining eight piers. The maximum predicted pier...
Authors
Glenn A. Hodgkins, Pamela J. Lombard
Simulation of reservoir storage and firm yields of three surface-water supplies, Ipswich River Basin, Massachusetts Simulation of reservoir storage and firm yields of three surface-water supplies, Ipswich River Basin, Massachusetts
A Hydrologic Simulation Program FORTRAN (HSPF) model previously developed for the Ipswich River Basin was modified to simulate the hydrologic response and firm yields of the water-supply systems of Lynn, Peabody, and Salem-Beverly. The updated model, expanded to include a portion of the Saugus River Basin that supplies water to Lynn, simulated reservoir system storage over a 35-year...
Authors
Phillip J. Zarriello
Streamflow, water quality, and contaminant loads in the lower Charles River Watershed, Massachusetts, 1999-2000 Streamflow, water quality, and contaminant loads in the lower Charles River Watershed, Massachusetts, 1999-2000
Streamflow data and dry-weather and stormwater water-quality samples were collected from the main stem of the Charles River upstream of the lower Charles River (or the Basin) and from four partially culverted urban streams that drain tributary subbasins in the lower Charles River Watershed. Samples were collected between June 1999 and September 2000 and analyzed for a number of potential
Authors
Robert F. Breault, Jason R. Sorenson, Peter K. Weiskel
Simulation of ground-water flow and evaluation of water-management alternatives in the upper Charles River basin, eastern Massachusetts Simulation of ground-water flow and evaluation of water-management alternatives in the upper Charles River basin, eastern Massachusetts
Ground water is the primary source of drinking water for towns in the upper Charles River Basin, an area of 105 square miles in eastern Massachusetts that is undergoing rapid growth. The stratified-glacial aquifers in the basin are high yield, but also are thin, discontinuous, and in close hydraulic connection with streams, ponds, and wetlands. Water withdrawals averaged 10.1 million...
Authors
Leslie A. DeSimone, Donald A. Walter, John R. Eggleston, Mark T. Nimiroski
Estimated quantity of water in fractured bedrock units on Mt. Desert Island, and estimated ground-water use, recharge, and dilution of nitrogen in septic waste in the Bar Harbor area, Maine Estimated quantity of water in fractured bedrock units on Mt. Desert Island, and estimated ground-water use, recharge, and dilution of nitrogen in septic waste in the Bar Harbor area, Maine
In 2002, the U.S. Geological Survey, in cooperation with the town of Bar Harbor, Maine, and the National Park Service, conducted a study to assess the quantity of water in the bedrock units underlying Mt. Desert Island, and to estimate water use, recharge, and dilution of nutrients from domestic septic systems overlying the bedrock units in several watersheds in rural Bar Harbor. Water...
Authors
Martha G. Nielsen
Potential effects of structural controls and street sweeping on stormwater loads to the lower Charles River, Massachusetts Potential effects of structural controls and street sweeping on stormwater loads to the lower Charles River, Massachusetts
The water quality of the lower Charles River is periodically impaired by combined sewer overflows (CSOs) and non-CSO stormwater runoff. This study examined the potential non-CSO load reductions of suspended solids, fecal coliform bacteria, total phosphorus, and total lead that could reasonably be achieved by implementation of stormwater best management practices, including both...
Authors
Phillip J. Zarriello, Robert F. Breault, Peter K. Weiskel
Guidance on the use of passive-vapor-diffusion samplers to detect volatile organic compounds in ground-water-discharge areas, and example applications in New England Guidance on the use of passive-vapor-diffusion samplers to detect volatile organic compounds in ground-water-discharge areas, and example applications in New England
Polyethylene-membrane passive-vapor-diffusion samplers, or PVD samplers, have been shown to be an effective and economical reconnaissance tool for detecting and identifying volatile organic compounds (VOCs) in bottom sediments of surface-water bodies in areas of ground-water discharge. The PVD samplers consist of an empty glass vial enclosed in two layers of polyethylene membrane tubing...
Authors
Peter E. Church, Don A. Vroblesky, Forest P. Lyford
Hydrogeology of sand and gravel deposits near the Nepaug Reservoir, New Hartford and Burlington, Connecticut Hydrogeology of sand and gravel deposits near the Nepaug Reservoir, New Hartford and Burlington, Connecticut
Sand and gravel deposits near the Nepaug Reservoir in New Hartford and Burlington, Connecticut, were studied to provide a basis for ongoing investigations that will evaluate water-quality conditions in the watershed and the effects of sand and gravel mining on the quality of water in the reservoir. In the Nepaug area, surficial glacial materials overlie crystalline bedrock that is...
Authors
Janet Radway Stone, J. Jeffrey Starn, Jonathan Morrison
Water budget for Sebago Lake, Maine, 1996-99 Water budget for Sebago Lake, Maine, 1996-99
Annual water budgets were developed for Sebago Lake in southwestern Maine. The inflow components of the water budget are direct precipitation to the surface of the lake and surface-water inflow. Mean annual inflow to Sebago Lake during water years 1996-99 was 35,100 million cubic feet. The outflow components of the water budget are evaporation from the surface of the lake, municipal...
Authors
Robert W. Dudley, Glenn A. Hodgkins, Joseph P. Nielsen
Statewide water-quality network for Massachusetts Statewide water-quality network for Massachusetts
A water-quality monitoring program is proposed that would provide data to meet multiple information needs of Massachusetts agencies and other users concerned with the condition of the State's water resources. The program was designed by the U.S. Geological Survey and the Massachusetts Department of Environmental Protection, Division of Watershed Management, with input from many...
Authors
Leslie A. DeSimone, Peter A. Steeves, Marc James Zimmerman