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Experimental research on shear-slip characteristics of simulated fault with zigzag-type gouge

机译:曲折型断层模拟断层的剪切滑移特性试验研究

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摘要

We sheared layers of polymethyl methacrylate (PMMA) by traditional double-direct shear tests, and synchronously measured the acoustic emissions (AE) generated by shear-slip and friction. Laboratory observations of simulated fault by PMMA materials with zigzag-type gouge showing repetitive, shear-slip events that are reminiscent of earthquakes were verified. In addition, the influencing rules of zigzag size and normal force on shear-slip process and intensity, as well as AE were revealed. Especially, prior to final failure of zigzag, the duration among shear-slip events gradually decreases and shows significant steadiness, which may prove the probability of the obvious foreshock effect to a larger earthquake. Maybe, this work can interpret the shear-slip mechanism of earthquakes and even provide warnings of failure and instability of fault. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们通过传统的双向直接剪切试验剪切了聚甲基丙烯酸甲酯(PMMA)的层,并同步测量了由剪切滑移和摩擦产生的声发射(AE)。验证了在实验室内通过锯齿形凿孔的PMMA材料模拟的断层观测结果,该断层显示出重复的剪切滑动事件,使人联想到地震。另外,揭示了锯齿形大小和法向力对剪切滑移过程和强度以及声发射的影响规律。特别是在之字形最终失效之前,剪切滑动事件之间的持续时间逐渐减小,并显示出明显的稳定性,这可能证明对较大的地震具有明显的前震效应的可能性。也许,这项工作可以解释地震的剪切滑动机制,甚至可以提供失败和断裂不稳定的警告。 (C)2016 Elsevier Ltd.保留所有权利。

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