HR: 15:25h
AN: H43J-08 INVITED [Abstracts]
TI: Self-potential method for characterizing streaming flows in the saturated and vadose zones: state of
the art and limitations
AU: * SAILHAC, P
EM: pascal.sailhac@eost.u-strasbg.fr
AF: EOST-IPGS, 5, rue Ren‚ Descartes
, Strasbourg, 67084
France
AB:
Self-Potential (SP) method is sensitive not only to the water content, but, above all, to flow velocities within the
underground porous medium. So it can be considered as a crucial help in hydrogeophysics. This is underlined by the so-called
electrokinetic coupling and has been early used in geophysics (e.g. Bogoslovsky and Ogilvy, 1970) and hydrology (Abaza and
Clyde 1969). During the last decade, both experimental and theoretical progresses have moved ahead SP to provide quantitative
flow parameters. Now SP time and/or spatial variations can be used to monitor water fluxes during infiltration (e.g. Thony
et al. 1997, Doussan et al. 2002, Darnet & Marquis 2004), seepage (Titov et al. 2000), or pumping (e.g. Fagerlund & Heinson
2003, Darnet et al. 2003, Revil et al. 2003). In order that SP is used by a larger community, it would be useful to recall
the fundamentals, to review recent interpretation techniques in a simple framework and to precise their limitations. First
considering flows in the saturated zone and a pumping experiment, I will show different interpretation techniques that are
based upon Green function decompositions (e.g. wavelets, COP tomography of Patella, and iso-α line of Revil et al.).
Classical application of theses techniques is underlined by the assumption of a constant electrical conductivity medium that
involves uncertainty and bias in quantitative flow parameter estimates. For instance, the diffusive effect of a conductive
shallow layer tends to increase the apparent depth of an underground flow source or sink. To correct this problem, one can
use Green functions of a tabular medium in the COP tomography. In the complex case of unsaturated zone, the hydraulic and
electric conductivities are depending on the water content. We will discuss on different soil models and different
experiments that can be used for the monitoring of the infiltration and the characterisation of the soil hydraulic
parameters.
DE: 0925 Magnetic and electrical methods (5109)
DE: 1829 Groundwater hydrology
DE: 1847 Modeling
DE: 1866 Soil moisture
DE: 1895 Instruments and techniques: monitoring
SC: Hydrology [H]
MN: Fall Meeting 2005