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Cracking Mode Analysis of Crack Initiation in Rocks under Uniaxial Compression

机译:单轴压缩下岩石裂纹启动的开裂模式分析

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Crack initiation is related to the behavior of the preexisting microcracks within a rock specimen, which suggests the specimen starts to fail. The determination of crack initiation stress is important for identifying the elastic stage and related mechanical parameters. Uniaxial compression tests with acoustic emission monitoring were performed to study crack initiation for tight sandstone, loose sandstone, and granite. The evolution of the cracking mode, i.e., the statistics of the cracking mode under compression, was obtained through modified acoustic emission parameter analysis. Based on the logarithm of the acoustic emission parameter (LAEP), a cracking mode analysis (CMA) method is proposed and used to determine the crack initiation stress. Results from the tests indicate that the crack initiation stress between the same rock specimens obtained by CMA is very close. The mean ratio of crack initiation stress to compression strength is 0.45, 0.34, and 0.35 for tight sandstone, loose sandstone, and granite, respectively. According to the results of CMA, crack volumetric strain (CVS) method, and lateral strain response (LSR) method, there is no big difference among those methods in tight sandstone and loose sandstone. In granite, the results obtained by CMA are close to those obtained by CVS, but smaller than those obtained by LSR. The CMA interprets the initiation of cracks from the fracture behavior of microcracks and is an objective method to determine the initiation stress.
机译:裂纹启动与岩石样本内的预先存在的微裂纹的行为有关,这表明样本开始失败。裂纹引发应力的测定对于识别弹性级和相关机械参数非常重要。进行了具有声发射监测的单轴压缩试验,以研究砂岩,松散砂岩和花岗岩的裂纹启动。通过改进的声发射参数分析获得了裂化模式的进化,即裂化模式下的裂化模式的统计。基于声发射参数(LAEP)的对数,提出了一种开裂模式分析(CMA)方法并用于确定裂纹启动应力。测试结果表明,CMA获得的相同岩石标本之间的裂纹起始应力非常接近。对于紧密砂岩,松散的砂岩和花岗岩,裂纹引发胁迫对压缩强度的平均比为0.45,0.34和0.35。根据CMA,裂纹体积菌株(CVS)方法和横向应变响应(LSR)方法的结果,在紧密砂岩和松散砂岩中的这些方法中没有大的差异。在花岗岩中,CMA获得的结果接近CVS获得的结果,但小于通过LSR获得的结果。 CMA解释从微裂纹的断裂行为的裂缝开始,并且是确定起始应力的客观方法。

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