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Estimation of cracking and damage mechanisms in rock under triaxial compression by moment tensor analysis of acoustic emission

机译:声发射矩张量分析估算三轴压缩下岩石的开裂破坏机理

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摘要

In highly stressed conditions, the excavation damaged zone induced by stress redistribution and disturbance must be evaluated after tunnel excavation. Therefore, the deformation and fracture characteristics of rock must be investigated. In this study, the fracture and damage mechanisms of rock induced by the accumulation of microcracks were investigated by moment tensor analysis, as well as by the moving point regression technique, both of which were applied to acoustic emission (AE) and strain data obtained from triaxial compression tests. Damage thresholds before the peak strength of rock under triaxial compression were determined by the moving point regression technique using acoustic emission data. The results showed that damage thresholds, except the crack closure stress, increased linearly with confining pressure. The results of the moment tensor analysis showed that shear failure was a major microscopic failure mechanism of rock under triaxial compression. In addition, shear failure became more dominant as the confining pressure increased. In this analysis, the expression of the damage magnitudes in each AE source as relative crack volumes leads to accurate prediction of macroscopic failure mechanisms, as well as major failure planes in the rock. In addition, the orientation of the macroscopic failure plane could be estimated by the orientational distribution of microcracks.
机译:在高应力条件下,必须在隧道开挖后评估由应力重新分布和扰动引起的开挖破坏区。因此,必须研究岩石的变形和断裂特性。在这项研究中,通过矩张量分析以及移动点回归技术研究了由微裂纹累积引起的岩石破裂和破坏机理,两者均应用于声发射(AE)和从中获得的应变数据。三轴压缩测试。利用声发射数据,通过移动点回归技术确定了三轴压缩作用下岩石峰值强度之前的破坏阈值。结果表明,除裂纹闭合应力外,损伤阈值随围压线性增加。弯矩张量分析的结果表明,剪切破坏是岩石在三轴压缩下的主要微观破坏机制。另外,随着围压的增加,剪切破坏变得更加明显。在此分析中,将每个AE源中的破坏幅度表示为相对裂缝体积,从而可以准确预测宏观破坏机理以及岩石中的主要破坏面。另外,可以通过微裂纹的取向分布来估计宏观破坏面的取向。

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