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Theoretical relationship between elastic wave velocity and electrical resistivity

Authors
Lee, Jong-SubYoon, Hyung-Koo
Issue Date
5월-2015
Publisher
ELSEVIER SCIENCE BV
Keywords
Bulk modulus; Elastic wave velocity; Electrical resistivity; Porosity
Citation
JOURNAL OF APPLIED GEOPHYSICS, v.116, pp.51 - 61
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF APPLIED GEOPHYSICS
Volume
116
Start Page
51
End Page
61
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/93685
DOI
10.1016/j.jappgeo.2015.02.025
ISSN
0926-9851
Abstract
Elastic wave velocity and electrical resistivity have been commonly applied to estimate stratum structures and obtain subsurface soil design parameters. Both elastic wave velocity and electrical resistivity are related to the void ratio; the objective of this study is therefore to suggest a theoretical relationship between the two physical parameters. Gassmann theory and Archie's equation are applied to propose a new theoretical equation, which relates the compressional wave velocity to shear wave velocity and electrical resistivity. The piezo disk element (PDE) and bender element (BE) are used to measure the compressional and shear wave velocities, respectively. In addition, the electrical resistivity is obtained by using the electrical resistivity probe (ERP). The elastic wave velocity and electrical resistivity are recorded in several types of soils including sand, silty sand, silty clay, silt, and clay-sand mixture. The appropriate input parameters are determined based on the error norm in order to increase the reliability of the proposed relationship. The predicted compressional wave velocities from the shear wave velocity and electrical resistivity are similar to the measured compressional velocities. This study demonstrates that the new theoretical relationship may be effectively used to predict the unknown geophysical property from the measured values. (C) 2015 Elsevier B.V. All rights reserved.
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LEE, Jong Sub
공과대학 (건축사회환경공학부)
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