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Open-File Report 2014–1020

Toxic Substances Hydrology Program
Prepared in cooperation with U.S. Department of the Navy

Transmissivity and storage coefficient estimates from slug tests, Naval Air Warfare Center, West Trenton, New Jersey

By Alex R. Fiore

References Cited

Bouwer, H., and Rice, R.C., 1976, A slug test method for determining hydraulic conductivity of unconfined aquifers with completely or partially penetrating wells: Water Resources Research, v. 12, no. 3, p. 423–428,

Butler, J.J., Jr., Garnett, E.J., and Healey, J.M., 2003, Analysis of slug tests in formations of high hydraulic conductivity: Ground Water, v. 41, no. 5, p. 620–630,

Cooper, H.H., Bredehoeft, J.D., and Papadopulos, I., 1967, Response of a finite-diameter well to an instantaneous charge of water: Water Resources Research, v. 3, no. 1, p. 263–269,

Cunningham, W.L., and Schalk, C.W., 2011, Groundwater technical procedures of the U.S. Geological Survey: U.S. Geological Survey Techniques and Methods 1-A1, 151 p.,

Duffield, G.M., 2000, AQTESOLV for Windows Version 3.01.004 Professional: HydroSOLVE, Inc.,

EA Engineering, Science, and Technology, Inc., 1996, Aquifer test report for Naval Air Warfare Center, Trenton, New Jersey: Berkeley Heights, N.J., Contract no. N62472-92-DF-1296, Project no. 29600.43, about 100 p.

Goode, D.J., Tiedeman, C.R., Lacombe, P.J., Imbrigiotta, T.E., Shapiro, A.M., and Chapelle, F.H., 2007, Contamination in fractured-rock aquifers—Research at the former Naval Air Warfare Center, West Trenton, New Jersey: U.S. Geological Survey Fact Sheet 2007–3074, 2 p.,

Halford, K.J., and Kunianksy, E.L., 2002, Documentation of spreadsheets for the analysis of aquifer-test and slug-test data: U.S. Geological Survey Open-File Report 02–197, 51 p.,

Hvorslev, M.J., 1951, Time lag and soil permeability in ground-water observations: Vicksburg, Mississippi, U.S. Army Corps of Engineers, Bulletin no. 36, Waterways Experiment Station, p. 1–50.

International Technology (IT) Corporation, 1994, Remedial investigation report, installation restoration program, Naval Air Warfare Center, Trenton, New Jersey: Edison, N.J., Contract no. N624-86-c-1041, Project no. 529538, 529658, 6 volumes.

Lacombe, P.J., 2000, Hydrogeologic framework, water levels, and trichloroethylene contamination, Naval Air Warfare Center, West Trenton, New Jersey, 1993–97: Water-Resources Investigation Report 98–4167, 139 p.,

Lacombe, P.J., and Burton, W.C., 2010, Hydrogeologic framework of fractured sedimentary rock, Newark Basin, New Jersey: Groundwater Monitoring and Remediation, v. 30, no. 2, p. 35–45,

Lewis-Brown, J.C., and Rice, D.E., 2002, Simulated ground-water flow, Naval Air Warfare Center, West Trenton, New Jersey: U.S. Geological Survey Water-Resources Investigations Report 02–4019, 44 p.,

Lewis-Brown, J.C., Carleton, G.B., and Imbrigiotta, T.E., 2005, Hydraulic and solute-transport properties and simulated advective transport of contaminated ground water in a fractured-rock aquifer at the Naval Air Warfare Center, West Trenton, New Jersey, 2003: U.S. Geological Survey Scientific Investigations Report 2005–5049, 32 p.,

Shapiro, A.M., and Hsieh, P.A., 1998, How good are estimates of transmissivity from slug tests in fractured rock?: Ground Water, v. 36, no. 1, p. 37–48,

Tiedeman, C.R., Lacombe, P.J., and Goode, D.J., 2010, Multiple well-shutdown tests and site-scale flow simulation in fractured rocks: Groundwater, v. 48, no. 3, p. 401–415,

Williams, J.H., Lacombe, P.J., Johnson, C.D., and Paillet, F.L., 2007, Cross-borehole flow tests and insights into hydraulic connections in fractured mudstone and sandstone, in Proceedings of the Symposium on the Application of Geophysics to Engineering and Environmental Problems (SAGEEP 2007), Denver, Colorado, April 1–5, 2007: Denver, Colo., Environmental and Engineering Geophysical Society, p. 1140–1152 (CD-ROM).

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