Wetzler Nadav, Lay Thorne, Brodsky Emily E, Kanamori Hiroo
Department of Earth and Planetary Sciences, University of California Santa Cruz, Santa Cruz, CA 95064, USA.
Geological Survey of Israel, Jerusalem, Israel.
Sci Adv. 2018 Feb 14;4(2):eaao3225. doi: 10.1126/sciadv.aao3225. eCollection 2018 Feb.
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 () ≥ 7] subduction zone plate boundary mainshocks with consistently determined coseismic slip distributions establishes that 15 to 55% of all master event-relocated aftershocks with ≥ 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.
板块边界地震期间的断层滑动会释放一部分因板块相对运动的摩擦阻力而积累的剪应力。对101次大型(矩震级()≥7)俯冲带板块边界主震进行调查,这些主震的同震滑动分布已得到一致确定,结果表明,所有矩震级≥5.2的主震重新定位后的余震中,有15%至55%位于主震破裂的滑动区域内,很少有余震位于峰值滑动区域,这考虑到了滑动模型中的不确定性。对于优选模型,在按比例缩放的滑动区域中心四分之三范围内余震的累积不足率在15%至45%之间,且随观测到的余震总数增加而增大。主震同震滑动的空间梯度会在滑动带边缘附近集中残余剪应力,并在滑动带之外增大应力,从而促使板间和板内余震在主震滑动周边附近发生。主震期间大滑动区域内的剪应力降低通常足以防止余震序列中进一步发生显著破裂,这与大滑动区域重新锁定且在相当长一段时间内不再破裂相一致。