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Effect of layer orientation on acoustic emission characteristics of anisotropic shale in Brazilian tests

机译:巴西试验中层取向对各向异性页岩声发射特性的影响

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Shale bedding affects the constituent heterogeneity and the anisotropy of mechanical behaviour. To investigate the damage evolution and acoustic emission (AE) characteristics during failure process of anisotropic shale, the MTS 815 rock mechanics test system and the PAC AE test system were employed to perform Brazilian tests on shale samples, which revealed the effect of different layer inclination angles between the loading direction and the bedding plane. The tensile stress at the disc center was obtained based on transversely isotropic theory, and then the AE evolution process and energy release characteristics were further analyzed. Results observe a considerable influence from different layer orientations on shale failure modes and AE properties. The consistency between the failure state and the AE spatial distribution is preliminary confirmed. The AE signals were concentrated near the loading points as well as the crack kinking points, and accumulated more in the tensile-shear region rather than in the pure tensile region. The AE characteristics also reflect vividly the anisotropic split behaviors, among which the central spilt failure produced relatively weak and stable AE signals during the whole damage process. Of particular interest is that the crack initiation point might be captured by the AE source with the maximum ring counts. To a certain extent, the experimental results probe the layer effect on AE properties of fracture initiation and propagation, providing possible implications for the interpretation and analysis of microseismic monitoring in field fracturing. (C) 2016 Elsevier B.V. All rights reserved.
机译:页岩层理影响成分非均质性和机械行为的各向异性。为了研究各向异性页岩在破坏过程中的破坏演化和声发射(AE)特性,采用MTS 815岩石力学测试系统和PAC AE测试系统对页岩样品进行巴西测试,揭示了不同层倾角的影响加载方向和铺垫平面之间的角度。基于横观各向同性理论,求出了圆盘中心的拉应力,进而分析了声发射过程和能量释放特性。结果观察到,不同层的取向对页岩破坏模式和声发射特性的影响很大。初步确认了故障状态与AE空间分布之间的一致性。 AE信号集中在载荷点和裂缝的扭结点附近,并且更多地累积在拉伸剪切区域而非纯拉伸区域。声发射特征还生动地反映了各向异性的分裂行为,其中在整个破坏过程中,中央溢出的破坏产生了相对较弱和稳定的声发射信号。特别令人感兴趣的是,裂纹萌生点可能会被具有最大环数的AE源捕获。在一定程度上,实验结果探讨了层对裂缝起裂和扩展的声发射特性的影响,为现场压裂中微地震监测的解释和分析提供了可能的含义。 (C)2016 Elsevier B.V.保留所有权利。

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