Research on conductive models of damaged soil that consider the effect of microcrack expansion (the degree of saturation and suction) is weak. By assuming an equivalent conductive path a unit series–parallel conductive model of damaged soil under environmental loads was proposed. This model shows the change in soil porosity and fractal dimension. To verify that, the soil was damaged by rainfall cycles (simulated natural drying and rainfall). Electrical measurements and X-ray microscopy tests were performed to obtain the damaged soil resistivity, porosity, and fractal dimension variation. The resistivity was calculated based on the conductive model, and the error was approximately 7.9% compared with that of the test. In addition, the soil damage variable related to soil porosity and fractal dimension was introduced, and it exhibited a logarithmic relationship with soil resistivity. Variations in soil damage during the rainfall cycles were observed. In the top layer, the soil porosity increased and the fractal dimension decreased owing to microcrack expansion, resulting in an increase in soil damage. In contrast, in the bottom layer, the soil porosity decreased and the fractal dimension increased, resulting in a decrease in soil damage due to particle migration from the top area and pore fill.
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July 2025
Research Article|
May 06 2025
A unit series–parallel electrical conductivity model of soil under environmental loads
Ganglie Yuan, PhD;
Ganglie Yuan, PhD
Shanghai Key Laboratory for Digital Maintenance of Buildings and Infrastructure, School of Naval Architecture, Ocean and Civil Engineering, Shanghai Jiao Tong University, Shanghai, China
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Ailan Che, PhD
Ailan Che, PhD
Shanghai Key Laboratory for Digital Maintenance of Buildings and Infrastructure, School of Naval Architecture, Ocean and Civil Engineering, Shanghai Jiao Tong University, Shanghai, China (corresponding author: alche@sjtu.edu.cn)
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Publisher: Emerald Publishing
Received:
March 28 2023
Accepted:
April 10 2025
Online ISSN: 2051-803X
Emerald Publishing Limited: All rights reserved
2025
Environmental Geotechnics (2025) 12 (6): 420–432.
Article history
Received:
March 28 2023
Accepted:
April 10 2025
Citation
Yuan G, Che A (2025), "A unit series–parallel electrical conductivity model of soil under environmental loads". Environmental Geotechnics, Vol. 12 No. 6 pp. 420–432, doi: https://doi.org/10.1680/jenge.23.00026
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