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Detailed analysis of acoustic emission activity during catastrophic fracture of faults in rock

机译:岩石断裂灾难性断裂过程中声发射活动的详细分析

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The detailed time-space distribution of acoustic emission (AE) events during the catastrophic fracture of rock samples containing a preexisting joint or potential fracture plane is obtained under triaxial compression using a high-speed 32-channel waveform recording system, and the results are discussed with respect to the prediction and characterization of catastrophic fault failure. AE activity is modeled quantitatively in terms of the seismic b- value of the magnitude-frequency relation, the self-excitation strength of the AE time series, and the fractal dimension of AE hypocenters. Consistent with previous studies on rock samples containing a fracture plane with several asperities, the present analyses reveal three long-term phases of AE activity associated with damage creation on heterogeneous faults, each clearly identifiable based on the above parameters. A long-term decreasing trend and short-term fluctuation of the b-value in the phase immediately preceding dynamic fracture are identified as characteristic features of the failure of heterogeneous faults. Based on the experimental results it is suggested that precursory anomalies related to earthquakes and other events associated with rock failure are strongly dependent on the heterogeneity of the fault or rock mass. A homogeneous fault or rock mass appears to fracture unpredictably without a consistent trend in precursory statistics, while inhomogeneous faults fracture with clear precursors related to the nature of the heterogeneity.
机译:使用高速32通道波形记录系统在三轴压缩下获得了包含预先存在的节理或潜在断裂面的岩石样品在灾难性断裂过程中声发射(AE)事件的详细时空分布,并对结果进行了讨论关于灾难性故障的预测和表征。根据震级-频率关系的地震b值,AE时间序列的自激励强度以及AE震源的分形维数,对AE活动进行定量建模。与先前对包含具有多个粗糙面的断裂面的岩石样品的研究相一致,本分析揭示了AE活动的三个长期阶段,这与在非均质断层上造成破坏有关,每个阶段都可以根据上述参数清楚地确定。动态断裂之前的相中b值的长期下降趋势和短期波动被确定为非均质断层破坏的特征。根据实验结果,建议与地震和与岩石破坏相关的其他事件有关的前兆异常强烈取决于断层或岩体的非均质性。均质断层或岩体似乎在前兆统计中没有一致趋势的情况下难以预测地破裂,而非均质断层破裂时具有与非均质性相关的清晰前兆。

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