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Unlocking the effects of friction on fault damage zones

机译:释放摩擦力对故障破坏区域的影响

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Two-dimensional, numerical models of a linear fault embedded within a linear elastic medium show the generation of off-fault tensile failure that results from inelastic slip along the fault. We explore quasi-static models with slip-weakening friction to assess the effects of spatially and temporally variable friction on the damage patterns. Tensile fractures form where tangential normal stresses along the fault exceed the tensile strength of the rock. These stresses result from locally high slip gradients at the rupture tip. Because faults of different displacement history and rock type could have varying slip-weakening distances, we examine the effect of changing the slip-weakening distance on the damage pattern and find that this parameter is important in determining off-fault fracture intensity and continuity along strike. Faults with short slip-weakening distance produce greater off-fault damage and significantly greater seismic radiated energy than faults with longer slip-weakening distances. We also investigate the effect of pre-existing damage on the subsequent development of fractures in second generation slip episodes and find that damage localizes onto pre-existing patches. These results could guide field studies of small faults as to whether the fault failed in one slip event or multiple small events.
机译:嵌入线性弹性介质中的线性断层的二维数值模型表明,断层拉伸破坏的产生是由于沿断层的非弹性滑动引起的。我们探索具有滑动弱化摩擦的准静态模型,以评估时空可变摩擦对损伤模式的影响。沿断层的切向法向应力超过岩石的抗拉强度时会形成拉伸断裂。这些应力是由破裂尖端处的局部高滑动梯度引起的。由于不同位移历史和岩石类型的断层可能具有不同的滑弱距离,因此我们研究了改变滑弱距离对破坏模式的影响,发现该参数对于确定断层断裂强度和沿走向的连续性很重要。 。与具有较弱滑移距离的断层相比,具有较弱滑移距离的断层会产生更大的断层破坏,并产生更大的地震辐射能量。我们还研究了先前存在的损伤对第二代滑移发作中骨折的后续发展的影响,并发现损伤位于局部已存在的斑块上。这些结果可以指导对小断层进行现场研究,以了解该断层是在一个滑动事件中还是在多个小事件中失败。

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