Experimental investigation on deformation characteristics and permeability evolution of rock under confining pressure unloading conditions围压卸载条件下岩石的变形特性及渗透演化的试验研究

被引:0
作者
Xu Chen
Chun-an Tang
Jin Yu
Jian-feng Zhou
Yan-yan Cai
机构
[1] Northeastern University,School of Resources and Civil Engineering
[2] Dalian University of Technology,School of Civil and Hydraulic Engineering
[3] Huaqiao University,Fujian Research Center for Tunneling and Urban Underground Space Engineering
来源
Journal of Central South University | 2018年 / 25卷
关键词
unloading rock mechanics; permeability evolution; triaxial experiment; acoustic emission; sandstone; 卸荷岩石力学; 渗透演化; 三轴试验; 声发射; 砂岩;
D O I
暂无
中图分类号
学科分类号
摘要
Deformation behavior and hydraulic properties of rock are the two main factors that influence safety of excavation and use of rock engineering due to in situ stress release. The primary objective of this study is to explore deformation characteristics and permeability properties and provide some parameters to character the rock under unloading conditions. A series of triaxial tests with permeability and acoustic emission signal measurement were conducted under the path of confining pressure unloading prior to the peak stress. Deformation behavior and permeability evolution in the whole stress—strain process based on these experimental results were analyzed in detail. Results demonstrate that, under the confining pressure unloading conditions, a good correspondence relationship among the stress—axial strain curve, permeability—axial strain curve and acoustic emission activity pattern was obtained. After the confining pressure was unloaded, the radial strain grew much faster than the axial strain, which induced the volumetric strain growing rapidly. All failures under confining pressure unloading conditions featured brittle shear failure with a single macro shear rupture surface. With the decrease in deformation modulus during the confining pressure unloading process, the damage variable gradually increases, indicating that confining pressure unloading was a process of damage accumulation and strength degradation. From the entire loading and unloading process, there was a certain positive correlation between the permeability and volumetric strain.
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页码:1987 / 2001
页数:14
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