Improved hydrogeophysical characterization using joint inversion of cross-hole electrical resistance and ground-penetrating radar traveltime data

Author:

Linde Niklas12,Binley Andrew3,Tryggvason Ari1,Pedersen Laust B.1,Revil André2

Affiliation:

1. Department of Earth Sciences/Geophysics; Uppsala University; Uppsala Sweden

2. Department of Hydrogeophysics and Porous Media; Centre Européen de Recherche et d'Enseignement des Géosciences de l'Environnement, Centre National de la Recherche Scientifique, Université Paul Cézanne; Aix-en-Provence France

3. Department of Environmental Science; Lancaster University; Lancaster UK

Publisher

American Geophysical Union (AGU)

Subject

Water Science and Technology

Reference55 articles.

1. Allen , D. L. L. J. Brewerton L. M. Coleby B. R. Gibbes M. A. Lewis A. M. MacDonald S. J. Wagstaff A. T. Williams 1997 The physical properties of major aquifers in England and Wales Tech. Rep. WD/95/34 Br. Geol. Surv. Keyworth, U. K

2. Binley , A. M. 2005 R3-Three-dimensional inversion of electrical resistance tomography data Lancaster Univ. Lancaster, U. K

3. Vadose zone flow model parameterisation using cross-borehole radar and resistivity imaging;Binley;J. Hydrol.,2002

4. Seasonal variation of moisture content in unsaturated sandstone inferred from borehole radar and resistivity profiles;Binley;J. Hydrol.,2002

5. Spec. Publ. SEPM Soc. Sediment. Geol.;Binley,2004

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