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Eric D. Swain

  • A coupled surface-water and ground-water flow model (MODBRANCH) for simulation of stream-aquifer interactionA coupled surface-water and ground-water flow model (MODBRANCH) for simulation of stream-aquifer interaction
  • A coupled surface-water and ground-water flow model for simulation of stream-aquifer interactionA coupled surface-water and ground-water flow model for simulation of stream-aquifer interaction
  • A model for simulation of surface-water integrated flow and transport in two dimensionsA model for simulation of surface-water integrated flow and transport in two dimensions
  • Determining discharge-coefficient ratings for coastal structures in Dade County, FloridaDetermining discharge-coefficient ratings for coastal structures in Dade County, Florida
  • Development, testing, and application of a coupled hydrodynamic surface-water/groundwater model (FTLOADDS) with heat and salinity transport in the Ten Thousand Islands/Picayune Strand Restoration Project Area, FloridaDevelopment, testing, and application of a coupled hydrodynamic surface-water/groundwater model (FTLOADDS) with heat and salinity transport in the Ten Thousand Islands/Picayune Strand Restoration Project Area, Florida
  • Effects of horizontal velocity variations on ultrasonic velocity measurements in open channelsEffects of horizontal velocity variations on ultrasonic velocity measurements in open channels
  • Spatial and temporal statistical analysis of a ground-water level network, Broward County, FloridaSpatial and temporal statistical analysis of a ground-water level network, Broward County, Florida
  • Two-dimensional hydrodynamic simulation of surface-water flow and transport to Florida Bay through the Southern Inland and Coastal Systems (SICS)Two-dimensional hydrodynamic simulation of surface-water flow and transport to Florida Bay through the Southern Inland and Coastal Systems (SICS)
  • Two-dimensional hydrodynamic simulation of surface-water flow and transport to Florida Bay through the Southern Inland and Coastal Systems (SICS)Two-dimensional hydrodynamic simulation of surface-water flow and transport to Florida Bay through the Southern Inland and Coastal Systems (SICS)