HR: 09:15h
AN: H41H-06 [Abstracts]
TI: Quasi 3D model construction of artificial recharge through the vadose zone using time-lapse zero-offset profiling of cross borehole radar
AU: * Kuroda, S
EM: skuroda@affrc.go.jp
AF: National Institute for Rural Engineering, Kannondai 2-1-6, Tsukuba, 305-8609, Japan
AU: Saito, H
EM: hiros@cc.tuat.ac.jp
AF: Tokyo University of Agriculture and Technology, Fuchu, Tokyo, 183-8509, Fuchu, 183-8509,
Japan
AU: Okuyama, T
EM: okuyama@affrc.go.jp
AF: National Institute for Rural Engineering, Kannondai 2-1-6, Tsukuba, 305-8609, Japan
AU: Takeuchi, M
EM: takeutch@affrc.go.jp
AU: Simunek, J
EM: Jiri.Simunek@ucr.edu
AF: University of California, Riverside, 900 University Ave, Riverside, CA 92521, United States
AU: Van Genuchten, M T
EM: vanGenuchten@ucr.edu
AF: U.S. Salinity Laboratory, USDA, ARS, Riverside, CA, 900 University Ave, Riverside, CA
92521, United States
AB:
Hydrologic processes in the vadose zone were studied by using a time-laps geophysical methodology. Main
focus was on using the acquired geophysical data to inversely estimate the soil water retention and unsaturated
hydraulic conductivity functions. The soil hydraulic properties were estimated from cross borehole radar data
obtained during a ground water recharge test in a infiltration pit. We used the HYDRUS-2D software package for
the inverse parameter estimation problem. The estimated soil hydraulic parameters were subsequently
employed in a forward simulation to construct a quasi three-dimensional image of the variably-saturated flow
process in the vadose zone.
DE: 1835 Hydrogeophysics
DE: 1875 Vadose zone
SC: Hydrology [H]
MN: 2007 Fall Meeting