Experimental and Numerical Investigation of Permeability Evolution with Damage of Sandstone Under Triaxial Compression

被引:1
|
作者
Xu Chen
Jin Yu
Chun’an Tang
Hong Li
Shanyong Wang
机构
[1] Northeastern University,School of Resources and Civil Engineering
[2] Huaqiao University,Institute of Geotechnical Engineering
[3] Dalian University of Technology,School of Civil and Hydraulic Engineering
[4] The University of Newcastle,ARC Centre of Excellence for Geotechnical Science and Engineering, Civil, Surveying and Environmental Engineering
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关键词
Triaxial compression; Hydromechanical coupling; Permeability evolution; Failure process; Numerical simulation; Rock mechanics;
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学科分类号
摘要
A series of triaxial compression tests with permeability measurements was carried out under different confining pressure and pore pressure difference coupling conditions to investigate some mechanical properties and permeability evolution with damage of sandstone. It is found that the shapes of stress–strain curves, permeability evolution curves, and failure patterns are significantly affected by the confining pressure but are only slightly affected by the pore pressure difference. In addition, the corresponding numerical simulations of the experiments were then implemented based on the two-dimensional Realistic Failure Process Analysis-Flow (RFPA2D-Flow) code. In this simulator, the heterogeneity of rock is considered by assuming the material properties of the mesoscopic elements conform to a Weibull distribution and a statistical damage constitutive model based on elastic damage mechanics and the flow–stress–damage (FSD) coupling model. The numerical simulations reproduced the failure processes and failure patterns in detail, and the numerical results about permeability–strain qualitatively agree with the experimental results by assigning different parameters in the FSD model. Finally, the experimental results about relationship between permeability evolution and volumetric strain are discussed.
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页码:1529 / 1549
页数:20
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