应力路径
岩土工程
压力(语言学)
覆岩压力
磁导率
压实
联轴节(管道)
地质学
结构工程
材料科学
工程类
剪切(地质)
复合材料
语言学
遗传学
生物
哲学
膜
岩石学
作者
Zhi Zheng,Hongyu Xu,Wei Wang,Qiang Zhang,Yujie Wang,Qiancheng Sun,Honghui Tao,Xiaofeng Han
标识
DOI:10.1177/10567895231193056
摘要
In the excavation of water-related underground projects such as hydropower and energy reserves, the surrounding rock surfers complex stress path and stress state redistribution, resulting in damage and failure under the hydro-mechanical coupling condition. However, the rock hydro-mechanical coupling characteristics under complex stress paths are unclear and corresponding theoretical models are scarce. In this study, a series of tests such as triaxial compression, unloading confining pressure and cyclic loading and unloading were carried out to study the effects of different stress paths, stress levels and seepage pressure on rock deformation, strength, failure and permeability. Based on test results, the damage evolutions under three different testing paths were analyzed, a new seepage-stress coupling statistical damage model which can better simulate the compaction stage is proposed. The prediction results of the proposed model under different stress paths are in good agreement with the experimental results. Under different stress paths, the fitting relationship between parameters R 0 and n and σ eff is similar and has good correlation.
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