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Dynamics of fluid-triggered fracturing in the models of a geological medium

机译:地质介质模型中的流体触发压裂动力学

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Implications of infusion of small (compared to the pore space) amounts of water for the dynamics of fracturing are studied in the laboratory experiments on the models of a heterogeneous geological medium. Variations in the acoustic emission that precede macrofracture are analyzed, including as candidate precursors. In all experiments, the macrofracture had occurred not immediately after the mechanical loading or water infusion but with a time-delay after a period of acoustic quiescence and subsequent activation. The enhancement in acoustic activity preceding macrofracture is well reproduced by the exponential law; the correlation between the actual number of events (or the released energy) and the exponential approximation exceeds the 95% confidence level. The power law is slightly worse although also a confident approximation of the acoustic emission process. The facts of subsequent occurrence of quiescence and activation suggest that, in principle, this phenomenon can be used as a precursory signature in the prediction of macrofracturing.
机译:在非均质地质介质模型的实验室实验中,研究了注入少量(与孔隙空间相比)的水对压裂动力学的影响。分析了宏观断裂之前的声发射变化,包括作为候选前体的变化。在所有实验中,大断裂不是在机械载荷或注水后立即发生,而是在一段时间的声音静止和随后的激活后发生了延时。指数定律很好地再现了宏观断裂之前的声活动增强。事件的实际数量(或释放的能量)与指数近似值之间的相关性超过了95%的置信度。功率定律稍微差一些,尽管也可以肯定地近似声发射过程。随后发生的静止和激活事实表明,原则上,该现象可以用作宏观破裂预测中的前兆特征。

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