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From the seismic cycle to long-term deformation: linking seismic coupling and Quaternary coastal geomorphology along the Andean Megathrust

机译:从地震周期到长期变形:沿着安第斯大推覆带将地震耦合和第四纪海岸地貌联系起来

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摘要

Measurement of interseismic strain along subduction zones reveals the location of both locked asperities, which might rupture during Megathrust earthquakes, and creeping zones, which tend to arrest such seismic ruptures. The heterogeneous pattern of interseismic coupling presumably relates to spatial variations of frictional properties along the subduction interface and may also show up in the forearc morphology. To investigate this hypothesis, we compiled information on the extent of earthquake ruptures for the last 500 years and uplift rates derived from dated marine terraces along the South American coastline from central Peru to Southern Chile. We additionally calculated a new interseismic coupling model for that same area based on a compilation of GPS data. We show that the coastline geometry, characterized by the distance between the coast and the trench, the latitudinal variations of long-term uplift rates and the spatial pattern of interseismic coupling are correlated. Zones of faster and long-term permanent coastal uplift, evidenced by uplifted marine terraces, coincide with peninsulas, and also with areas of creep on the megathrust where slip is mostly aseismic and tend to arrest seismic ruptures. We conclude that spatial variations of frictional properties along the megathrust dictate the tectono-geomorphological evolution of the coastal zone and the extent of seismic ruptures along strike.
机译:沿着俯冲带的地震应变的测量揭示了锁定的凹凸不平的位置,它们可能在大推力地震中破裂,而蠕变的区域往往会阻止这种地震破裂。震间耦合的非均质模式可能与沿俯冲界面的摩擦特性的空间变化有关,也可能表现在前臂形态上。为了研究这个假设,我们收集了有关过去500多年的地震破裂程度和从秘鲁中部到智利南部沿南美海岸线的陈旧海相阶跃得出的上升速率的信息。我们还根据GPS数据汇总,为该区域计算了一个新的地震耦合模型。我们表明,海岸线的几何特征是海岸和海沟之间的距离,长期上升率的纬度变化和地震耦合的空间模式之间的相关性。沿海地区隆起证明了较快和长期的永久性沿海隆升带,与半岛相吻合,也与巨推力上的蠕变区相吻合,滑移主要是抗震的,并倾向于阻止地震破裂。我们得出的结论是,沿着超大推力的摩擦特性的空间变化决定了海岸带的构造-地貌演化以及沿走向的地震破裂的程度。

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