HR: 0800h
AN: H21B-1018 [Abstracts]
TI: Using a Heat Pulse to Measure the Flux Between Groundwater and Surface Water
AU: * Enfield, C G
EM: enfield.carl@epa.gov
AF: NRMRL, 26 W Martin Luther King Drive, Cincinnati, OH 45268
United States
AU: Lien, B K
EM: lien.bob@epa.gov
AF: NRMRL, 26 W Martin Luther King Drive, Cincinnati, OH 45268
United States
AB:
EPA estimates that 10 percent of the sediments under the surface waters of the United States are contaminated and
approximately 20 percent of the superfund sites include contaminated sediments. The risk associated with these contaminated
sediments is directly related to the flux of water passing between the groundwater surface water. Design of potential
corrective actions requires knowledge of the fluxes. In an effort to reliably measure the temporal changes in water flux
that may change direction as well as amplitude over time, we have developed an instrument capable of measuring flow and
direction that is capable of measuring water flux with less than 10 percent error. The instrument measures the movement of a
pulse of heat injected into a pipe by watching the change in temperature at four locations, two on each side of the heater
and calculates the advective flux based on both the peak arrival time and moment analysis of the thermograph. We present the
design of the instrument, illustrate the calibration and data analysis and discuss sources of error in the measurement.
DE: 1719 Hydrology
DE: 1724 Ocean sciences
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting