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首页> 外文期刊>Bulletin of engineering geology and the environment >Deformation and mechanical properties of rock: effect of hydromechanical coupling under unloading conditions
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Deformation and mechanical properties of rock: effect of hydromechanical coupling under unloading conditions

机译:岩石变形与力学性能:卸载条件下流体力机械耦合的影响

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摘要

Mechanical behavior and deformation characteristics of rock under unloading conditions are of particular significance for analyzing excavation-induced instability problems of underground rock masses. In this paper, triaxial compression tests with progressive unloading of confining pressure were conducted upon sandstone specimens under different combinations of initial confining pressures and pore pressures. It is shown from the tests that the magnitude of initial confining pressure and pore pressure influences significantly the rock strength, energy conversion, crack propagation, and dilatancy during unloading process. The strength under unloading conditions is in compliance with the linear Mogi-Coulomb criterion. The energy conversion method can be employed to determine the crack damage thresholds during the unloading process. The analysis on cracking process suggests that crack damage thresholds increase linearly with initial confining pressure, but decrease with pore pressure. Under unloading conditions, material yield and brittle failure occur more easily with the increase in pore pressure. Furthermore, given the initial confining pressure, a higher level of pore pressure can accelerate volumetric expansion in the specimens.
机译:卸载条件下岩石的力学行为和变形特性对于分析地下岩体的挖掘诱导的不稳定性问题具有特别重要的意义。在本文中,在初始限制压力和孔压力的不同组合下,在砂岩标本下进行了具有逐步卸载压力的三轴压缩试验。从测试中显示出初始限制压力和孔隙压力的幅度显着影响卸载过程中的岩石强度,能量转换,裂纹传播和稀释性。卸载条件下的强度符合线性Mogi-Coulomb标准。能够采用能量转换方法来确定卸载过程中的裂纹损伤阈值。裂解过程的分析表明,裂纹损伤阈值随着初始限制压力线性而增加,但随着孔隙压力而降低。在卸载条件下,随着孔隙压力的增加,更容易发生物质产量和脆性失败。此外,鉴于初始限制压力,较高水平的孔隙压力可以加速样品中的体积膨胀。

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