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On the spatio-temporal distribution of acoustic emissions in two granitic rocks under triaxial compression: the role of pre-existing cracks

机译:三轴压缩作用下两个花岗岩岩石中声发射的时空分布:既有裂缝的作用

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We used a new rapid data acquisition system to examine the role of pre-existing crack density in determining the mechanical properties of crystalline rock. Two similar coarse-grained samples, Tsukuba granite (TG) and granitic porphyry (GP), were used in triaxial compression tests. The main difference between the: two rocks is that TC contains main large pre-existing cracks, whereas GP is almost crack-free. In our tests, the two rocks showed significantly different behaviors. In GP, before the fault nucleation, AE activity was low and showed increasing b-values with increasing stress. But in TG, a large number of AEs were observed and showed short-term b-value anomalies - mutual fluctuations on a decreasing background. The short-term fluctuations of b-values are closely correlated with those of the spatio-temporal clustering of AE locations. Our results demonstrate: 1) pre-existing cracks are the most dominant factor of all heterogeneities that govern the fault nucleation process in laboratory rock samples; 2) failure predictability is dependent on the pre-existing crack density. [References: 12]
机译:我们使用了一种新的快速数据采集系统来检查预先存在的裂缝密度在确定晶体岩石力学性能中的作用。三轴压缩测试中使用了两个类似的粗粒样品筑波花岗岩(TG)和花岗斑岩(GP)。两个岩石之间的主要区别在于TC包含主要的大型预先存在的裂缝,而GP几乎没有裂缝。在我们的测试中,这两块岩石表现出明显不同的行为。在GP中,断层成核之前,AE活性较低,并且b值随应力的增加而增加。但是在TG中,观察到大量AE,并显示出短期b值异常-在降低的背景下相互波动。 b值的短期波动与AE位置的时空聚类密切相关。我们的结果表明:1)预先存在的裂缝是控制实验室岩石样品中断层成核过程的所有非均质性的最主要因素; 2)失效的可预测性取决于预先存在的裂纹密度。 [参考:12]

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