A geostatistically based inverse model for electrical resistivity surveys and its applications to vadose zone hydrology

Author:

Yeh T.-C. Jim1,Liu S.1,Glass R. J.2,Baker K.3,Brainard J. R.2,Alumbaugh D.4,LaBrecque D.5

Affiliation:

1. Department of Hydrology and Water Resources; University of Arizona; Tucson Arizona USA

2. Sandia National Laboratory; Los Alamos New Mexico USA

3. Idaho National Engineering and Environmental Laboratory; Idaho Falls Idaho USA

4. Department of Civil and Environmental Engineering; University of Wisconsin-Madison; Madison Wisconsin USA

5. MultiPhase Technologies; Sparks Nevada USA

Publisher

American Geophysical Union (AGU)

Subject

Water Science and Technology

Reference39 articles.

1. Baker , K. Investigation of direct and indirect hydraulic property laboratory characterization methods for heterogeneous alluvial deposits: Application to the Sandia-Tech vadose zone infiltration test site Socorro, N. M. 2001

2. Brainard , J. R. R. J. Glass D. L. Alumbaugh L. Paprocki D. LaBrecque X. Yang T.-C. J. Yeh K. E. Baker C. A. Rautman The Sandia-Tech vadose zone facility: Experimental design and data report of a constant flux infiltration experiment Sandia Natl. Lab. Albuquerque, N. M. 2001

3. Carle , S. A. Ramirez W. Daily R. Newmark A. Tompson High-performance computation and geostatistical experiments for testing the capabilities of 3D electrical resistance tomography Environ. And Eng. Geophys. Soc. Oakland, Calif. 1999

4. Electrical resistivity tomography of vadose water movement;Daily;Water Resour. Res.,1992

5. The pole-pole 3-D dc resistivity inverse problem: A conjugate gradient approach;Ellis;Geophys. J. Int.,1994

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