A physically based model for the electrical conductivity of partially saturated porous media

Author:

Thanh Luong Duy1ORCID,Jougnot Damien2ORCID,Van Do Phan1,A Nguyen Van Nghia1,Tuyen Vu Phi3,Ca Nguyen Xuan4,Hien Nguyen Thi56

Affiliation:

1. Thuyloi University, 175 Tay Son, Dong Da, Hanoi, Vietnam

2. Sorbonne Université, CNRS, EPHE, UMR 7619 Metis, F-75005 Paris, France

3. Institute of Research and Development, Duy Tan University, 03 Quang Trung, Hai Chau District, Da Nang, Vietnam

4. Department of Physics and Technology, TNU—University of Sciences, Thai Nguyen, Vietnam

5. Ceramics and Biomaterials Research Group, Advanced Institute of Materials Science, Ton Duc Thang University, Ho Chi Minh City, Vietnam

6. Faculty of Applied Sciences, Ton Duc Thang University, Ho Chi Minh city, Vietnam

Abstract

SUMMARY In reservoir and environmental studies, the geological material characterization is often done by measuring its electrical conductivity. Its main interest is due to its sensitivity to physical properties of porous media (i.e. structure, water content, or fluid composition). Its quantitative use therefore depends on the efficiency of the theoretical models to link them. In this study, we develop a new physically based model that takes into account the surface conductivity for estimating electrical conductivity of porous media under partially saturated conditions. The proposed model is expressed in terms of electrical conductivity of the pore fluid, water saturation, critical water saturation and microstructural parameters such as the minimum and maximum pore/capillary radii, the pore fractal dimension, the tortuosity fractal dimension and the porosity. Factors influencing the electrical conductivity in porous media are also analysed. From the proposed model, we obtain an expression for the relative electrical conductivity that is consistent with other models in literature. The model predictions are successfully compared with published experimental data for different types of porous media. The new physically based model for electrical conductivity opens up new possibilities to characterize porous media under partially saturated conditions with geoelectrical and electromagnetic techniques.

Funder

National Foundation for Science and Technology Development

Publisher

Oxford University Press (OUP)

Subject

Geochemistry and Petrology,Geophysics

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