HR: 0800h
AN: H11D-1288 [Abstracts]
TI: Tracking 3D Tracer Migration: Non-stationary Conditioning of Resistivity Tomograms to Simulated
Concentrations
AU: * Singha, K
EM: ksingha@psu.edu
AF: Dept. of Geosciences, The Pennsylvania State University, 311 Deike Building, University Park, PA 16802
United States
AU: Gorelick, S M
EM: gorelick@pangea.stanford.edu
AF: Dept. of Geological and Environmental Sciences, Stanford University, Building 320, Geology Corner,
Stanford, CA 94305
United States
AB:
To quantitatively use electrical resistance tomography (ERT) to estimate groundwater solute concentrations, a relation must
exist between concentration and resistivity. Obtaining site-specific relations between geophysical and hydrogeologic state
variables traditionally entails application of empirical petrophysical expressions to tomographic geophysical images, such as
resistivity tomograms. In field applications, direct estimation of solute concentrations has been only moderately successful
because (1) reconstructed tomograms are often highly uncertain and subject to inversion artifacts; (2) the range of
subsurface conditions represented in data sets is incomplete due to the paucity of co-located well or core data and aquifer
heterogeneity; and (3) geophysical methods exhibit spatially variable sensitivity. We use numerical simulation of solute
transport and electrical resistance processes to create local non-stationary relations between the resistivity and tracer
concentration. These relations are applied to tomograms of electrical resistivity obtained from field measurements of
resistance using cross-well ERT. Based on synthetic and field cases, we demonstrate that tracer mass and concentration
estimates obtained using this non-stationary estimation approach are far better than those obtained using direct application
of empirical petrophysical relations such as Archie's law; the application of petrophysical relations directly to inverted 3D
ERT tomograms produces severe mass and concentration underestimates.
DE: 0550 Model verification and validation
DE: 1835 Hydrogeophysics
DE: 1846 Model calibration (3333)
DE: 1894 Instruments and techniques: modeling
DE: 5109 Magnetic and electrical properties (0925)
SC: Hydrology [H]
MN: Fall Meeting 2005