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Slip Sequences in Laboratory Experiments Resulting from Inhomogeneous Shear as Analogs of Earthquakes Associated with a Fault Edge

机译:作为与断层边缘相关的地震类似物的不均匀剪切导致的实验室实验中的滑动序列

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摘要

Faults are intrinsically heterogeneous with common occurrences of jogs, edges and steps. We therefore explore experimentally and theoretically how fault edges may affect earthquake and slip dynamics. In the presented experiments and accompanying theoretical model, shear loads are applied to the edge of one of two flat blocks in frictional contact that form a fault analog. We show that slip occurs via a sequence of rapid rupture events that initiate from the loading edge and are arrested after propagating a finite distance. Each successive event extends the slip size, transfers the applied shear across the block, and causes progressively larger changes of the contact area along the contact surface. Resulting from this sequence of events, a hard asperity is dynamically formed near the loaded edge. The contact area beyond this asperity is largely reduced. These sequences of rapid events culminate in slow slip events that precede a major, unarrested slip event along the entire contact surface. We suggest that the 1998 M5. 0 Sendai and 1995 off-Etorofu earthquake sequences may correspond to this scenario. Our work demonstrates, qualitatively, how the simplest deviation from uniform shear loading may significantly affect both earthquake nucleation processes and how fault complexity develops.
机译:断层本质上是异质的,经常出现点动,边缘和台阶。因此,我们在实验和理论上探索断层边缘如何影响地震和滑动动力学。在提出的实验和随附的理论模型中,剪切载荷被施加到两个平坦块之一的边缘,形成摩擦类似物,它们处于摩擦接触状态。我们显示,滑移是通过一系列快速破裂事件发生的,这些事件从装载边缘开始,并在传播有限距离后被阻止。每个连续的事件都会扩大滑移大小,将施加的剪切力传递到整个块体上,并导致沿接触表面的接触面积逐渐变大。由于这一系列事件,在加载的边缘附近会动态形成一个粗糙的凹凸。超出此粗糙程度的接触面积将大大减少。这些快速事件序列最终导致缓慢的滑动事件,该事件在整个接触表面上发生重大的,未阻止的滑动事件之前。我们建议使用1998 M5。 0仙台和1995年Etorofu以外的地震序列可能对应于这种情况。我们的工作定性地证明了均匀剪切载荷的最简单偏差如何对地震成核过程以及断层复杂性如何发展有重大影响。

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