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Seismic slip on an upper-plate normal fault during a large subduction megathrust rupture

机译:大俯冲巨推力破裂过程中上板正断层的地震滑动

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Quantification of stress accumulation and release during subduction zone seismic cycles requires an understanding of the distribution of fault slip during earthquakes. Reconstructions of slip are typically constrained to a single, known fault plane. Yet, slip has been shown to occur on multiple faults within the subducting plate(1) owing to stress triggering(2), resulting in phenomena such as earthquake doublets(3). However, rapid stress triggering from the plate interface to faults in the overriding plate has not been documented. Here we analyse seismic data from the magnitude 7.1 Araucania earthquake that occurred in the Chilean subduction zone in 2011. We find that the earthquake, which was reported as a single event in global moment tensor solutions(4,5), was instead composed of two ruptures on two separate faults. Within 12 s a thrust earthquake on the plate interface triggered a second large rupture on a normal fault 30 km away in the overriding plate. This configuration of partitioned rupture is consistent with normal-faulting mechanisms in the ensuing aftershock sequence. We conclude that plate interface rupture can trigger almost instantaneous slip in the overriding plate of a subduction zone. This shallow upper-plate rupture may be masked from teleseismic data, posing a challenge for real-time tsunami warning systems.
机译:量化俯冲带地震周期内应力的积累和释放需要了解地震过程中断层滑动的分布。滑移的重建通常限于一个已知的断层平面。然而,由于应力触发(2),已显示出俯冲板(1)内的多个断层上都发生了滑动,从而导致了诸如地震双峰(3)的现象。但是,尚未记录从板的界面到上覆板中的断层的快速应力触发。在这里,我们分析了2011年智利俯冲带发生的7.1级Araucania地震的地震数据。我们发现,在全球矩张量解(4,5)中报告为单个事件的地震由两个地震组成在两个单独的断层上破裂。在12 s内,板块界面上的推力地震触发了上覆板块30 km外的正常断层的第二次大破裂。分区破裂的这种配置与随后的余震序列中的正常断层机制是一致的。我们得出的结论是,板块界面破裂几乎可以触发俯冲带上覆板块的瞬时滑动。上层浅层破裂可能被远震数据掩盖了,这对实时海啸预警系统构成了挑战。

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