首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Dynamic Rupture Scenarios in the Brawley Seismic Zone, Salton Trough, Southern California
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Dynamic Rupture Scenarios in the Brawley Seismic Zone, Salton Trough, Southern California

机译:南加州萨尔顿大谷的Brawley地震区的动态破裂情景

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In this paper we investigate the dynamic behavior of a system of interconnected faults in the Brawley Seismic Zone (BSZ) in southern California. The system of faults includes the southern San Andreas Fault (SSAF), the Imperial Fault (IF), and a set of cross faults in the BSZ that may serve as connecting structures between the two larger faults. Geological and seismic evidence imply that the SSAF and IF may have buried extensions that link them together in a large-scale step over, with the cross faults in the BSZ cutting between them. Such a configuration poses the question of whether through-going rupture across the step over is possible in this region, leading to large, plate-boundary scale earthquakes. We investigate potential earthquakes in this region through 3-D dynamic finite element spontaneous rupture modeling. We find that under multiple assumptions about fault stress and fault geometry, through-going rupture is possible, both from north to south and south to north. Participation of the cross faults is facilitated by two factors: absence of rupture on one of the main two faults and a contrast in prestress between the main faults and the cross faults, leading to slow propagation speed on the main faults while maintaining ease of failure on the cross faults. The pattern of rupture propagation and slip is strongly affected by fault-to-fault dynamic stress interactions during the rupture process. The results may have implications for both potential earthquakes in this region, as well as for understanding the dynamics of geometrically complex/branched faults in general.
机译:在本文中,我们研究了南加州布拉夫利地震区(BSZ)中互联断层系统的动态行为。故障系统包括Southern San Andreas故障(SSAF),Imperial Fault(IF)以及BSZ中的一组交叉故障,可以用作两个更大的故障之间的连接结构。地质和地震证据意味着SSAF和IF可能已经埋入扩展,以便在大规模的阶梯中将它们连接在一起,在它们之间的BSZ切割中的交叉故障。这种配置造成了在该区域中跨越阶梯的贯穿过渡的问题的问题,导致大,板边界级地震。我们通过三维动态有限元自发性破裂建模调查该地区的潜在地震。我们发现,在关于故障应力和故障几何的多个假设下,可以通过北向南和南北到北方的流失破裂。交叉故障的参与是由两个因素促进的:在主要故障和交叉故障之间的主要两个故障和预应力中存在破裂,导致主要故障的传播速度缓慢,同时保持易于失败交叉故障。破裂繁殖和滑移的模式受破裂过程中的故障到故障动态应力相互作用的强烈影响。结果可能对该地区的潜在地震有影响,以及了解几何复杂/分支故障的动态。

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