Readfeed

Edmund A. Prych

  • A tracer test to estimate hydraulic conductivities and dispersivities of sediments in the shallow aquifer at the East Gate Disposal Yard, Fort Lewis, WashingtonA tracer test to estimate hydraulic conductivities and dispersivities of sediments in the shallow aquifer at the East Gate Disposal Yard, Fort Lewis, Washington
  • A warm water effluent analyzed as a buoyant surface jetA warm water effluent analyzed as a buoyant surface jet
  • Data on quantity and quality of water flowing in drainage systems of dry docks at Puget Sound Naval Shipyard, Bremerton, Washington, 1994Data on quantity and quality of water flowing in drainage systems of dry docks at Puget Sound Naval Shipyard, Bremerton, Washington, 1994
  • Flood-carrying capacities and changes in channels of the Lower Puyallup, White, and Carbon Rivers in western WashingtonFlood-carrying capacities and changes in channels of the Lower Puyallup, White, and Carbon Rivers in western Washington
  • Numerical model of the salt-wedge reach of the Duwamish River Estuary, King County, Washington by Edmund A. Prych, W. L. Haushild, and J. D. Stoner ; prepared in cooperation with the municipality of Metropolitan SeattleNumerical model of the salt-wedge reach of the Duwamish River Estuary, King County, Washington by Edmund A. Prych, W. L. Haushild, and J. D. Stoner ; prepared in cooperation with the municipality of Metropolitan Seattle
  • Numerical simulation of ground-water flow in lower Satus Creek Basin, Yakima Indian reservation, WashingtonNumerical simulation of ground-water flow in lower Satus Creek Basin, Yakima Indian reservation, Washington
  • Quantity and quality of storm runoff from three urban catchments in Bellevue, WashingtonQuantity and quality of storm runoff from three urban catchments in Bellevue, Washington
  • Using chloride and chlorine-36 as soil-water tracers to estimate deep percolation at selected locations on the U.S. Department of Energy Hanford site, WashingtonUsing chloride and chlorine-36 as soil-water tracers to estimate deep percolation at selected locations on the U.S. Department of Energy Hanford site, Washington