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Determination of the shear failure process of sediments on the northern slope of the South China Sea with measured electrical resistivity data

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Mendeley Data2018-12-26 更新2026-04-09 收录
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This reseach attempts to establish the relationship between resistivity and the shear failure process of shallow sediments in the gas hydrate production test area in the northern part of the South China Sea under saturated and unsaturated conditions. The stress, strain and the resistivity of soil during the shearing process were tested using a self-built, real-time testing system triaxial apparatus. The effects of water content, dry density, confining pressure and other factors on the resistivity variations were examined in detail. The results show that the relationship between resistivity variation and the shear failure process is different for saturated and unsaturated soil during the shear failure process, but both scenarios can be divided into three stages. In the first phase, the resistivity of saturated soil increases and the resistivity of unsaturated soil decreases rapidly. The corresponding soil state is one of initial compression and elastic deformation. In the second phase, the resistivity of the saturated soil and the unsaturated soil decrease slowly. The corresponding soil state is yielding deformation. In the third stage, the resistivity of the saturated soil decreased rapidly, and the resistivity of the unsaturated soil tended to be stable. The corresponding soil state is in failure deformation. The state of the soil can be determined by the variation of resistivity. This work is part of a preliminary study with a long-term objective of establishing a new method for extended observation of in situ marine soil. The initial stage of the project is to analyze the variation of resistivity during the shear failure process of soil and obtain a model that determines the failure state of soil based on resistivity changes. It is hoped that the obtained model will eventually help practicing engineers in the interpretation of resistivity monitoring in marine soil areas.
创建时间:
2018-12-26
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