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An aseismic slip pulse in northern Chile and along-strike variations in seismogenic behavior

机译:智利北部的地震滑移脉动和震源行为的沿走向变化

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We use interferometric synthetic aperture radar, GPS, and seismic observations spanning 5 to 18 years to reveal a detailed kinematic picture of the spatiotemporal evolution of fault slip in a region corresponding to the 30 July 1995 M w 8.1 subduction zone megathrust earthquake in northern Chile. In a single area, we document a complex mosaic of phenomena including large earthquakes, postseismic afterslip with a spatial distribution that appears to be tied to variations in coastal morphology, and a completely aseismic pulse that may have triggered a M w 7.1 earthquake on 30 January 1998. In contrast to simple models of fault slip behavior, this spatial heterogeneity indicates that frictional parameters on the fault do not have a systematic transition with depth and also vary rapidly along strike. The low amount of afterslip from the M w 8.1 earthquake relative to other similar events suggests that postseismic behavior may be modulated by the amount of sediment subducted.
机译:我们使用干涉合成孔径雷达,GPS和5至18年的地震观测资料,揭示了与智利北部1995年7月30日M w 8.1俯冲带特大推力地震相对应的区域中,断层滑动时空演变的详细运动学图像。在单个区域中,我们记录了一系列复杂的现象,包括大地震,震后余震以及空间分布似乎与沿海形态的变化有关,以及完全地震波可能触发了1月30日的7.1级地震1998年。与简单的断层滑动行为模型相反,这种空间上的非均质性表明断层上的摩擦参数没有随深度的系统过渡,并且沿走向也迅速变化。相对于其他类似事件,Mw 8.1地震产生的后滑量较小,这表明震后行为可能受俯冲的泥沙量调节。

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