Estimation of Soil Thickness Distribution on a Granitic Hillslope using Electrical Resistivity Method

Author:

YAMAKAWA Yosuke1,KOSUGI Ken'ichirou1,MASAOKA Naoya1,SUMIDA Jun1,TANI Makoto1,MIZUYAMA Takahisa1

Affiliation:

1. Kyoto University, Division of Forest &Biomass Science, Graduate School of Agricultural Science

Publisher

Japan Society of Erosion Control Engineering

Reference17 articles.

1. Hiramatsu, S., Mizuyama, T., and Okuyama, S. (1991): Influences of primary factors determing failures on natural mountain slopes by a landslides simulation model. (in Japanese, with English abstract.), J. Jpn. Soc. Erosion Control Eng, Vol. 43, No. 5, pp. 11-18.

2. Nyquist, J.E., Peake, J.S., and Roth, M.J.S. (2007): Comparison of an optimized resistivity array with dipole-dipole soundings in karst terrain, Geophysics, Vol. 72, No. 4, pp. 139-144.

3. Samouëlian, A., Cousin, I., Tabbagh, A., Bruand, A., and Richard, G. (2005): Electrical resistivity survey in soil science: A review, Soil and Tillage Research, Vol. 83, No. 2, pp. 173-193.

4. Nishimura, N., Senge, M., and Isozaki, H. (1987): Estimation of dynamic bearing capacity from the dynamic penetration tests and the influence of soil layer on its tests. (in japanese, with english abstract.), Res. Bull. Fac. Agric. Gifu Univ., Vol. 52, pp. 265-272.

5. Okimura, T., and Tanaka, S. (1980): Researches on soil horizon of weathered granite mountain slope and failured surface depth in a test field.(in Japanese, with English abstract.), J. Jpn. Soc. Erosion Control Eng, Vol. 33, No. 1, pp. 7-16.

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