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Systematic deficiency of aftershocks in areas of high coseismic slip for large subduction zone earthquakes

机译:大俯冲带地震高同震滑动区余震的系统缺陷

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摘要

Fault slip during plate boundary earthquakes releases a portion of the shear stress accumulated due to frictional resistance to relative plate motions. Investigation of 101 large [moment magnitude (Mw) ≥ 7] subduction zone plate boundary mainshocks with consistently determined coseismic slip distributions establishes that 15 to 55% of all master event–relocated aftershocks with Mw ≥ 5.2 are located within the slip regions of the mainshock ruptures and few are located in peak slip regions, allowing for uncertainty in the slip models. For the preferred models, cumulative deficiency of aftershocks within the central three-quarters of the scaled slip regions ranges from 15 to 45%, increasing with the total number of observed aftershocks. The spatial gradients of the mainshock coseismic slip concentrate residual shear stress near the slip zone margins and increase stress outside the slip zone, driving both interplate and intraplate aftershock occurrence near the periphery of the mainshock slip. The shear stress reduction in large-slip regions during the mainshock is generally sufficient to preclude further significant rupture during the aftershock sequence, consistent with large-slip areas relocking and not rupturing again for a substantial time.
机译:板块边界地震期间的断层滑动释放了由于相对板块运动的摩擦阻力而积累的部分剪应力。对具有一致确定的同震滑移分布的101个大[矩量级(Mw)≥7]俯冲带板边界主震的研究表明,所有主事件重新定位的余震Mw≥5.2的余震中有15%至55%位于主震的滑移区内破裂,极少位于峰滑动区域,从而允许滑动模型的不确定性。对于首选模型,在缩放后的滑动区域的中央四分之三内,余震的累积缺陷范围为15%至45%,随观察到的余震总数而增加。主震同震滑移的空间梯度将残余剪切应力集中在滑移带边缘附近,并增加了滑移带外部的应力,从而驱动板间和板内余震在主震滑动周边附近发生。在主震过程中,大滑移区域的切应力减小通常足以防止余震序列期间的进一步重大破裂,这与大滑移区域重新锁定并且在相当长的时间内不会再次破裂一致。

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