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lnterseismic coupling, segmentation and mechanical behavior of the central Chile subduction zone

机译:智利中部俯冲带的地震耦合,分段和力学行为

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Global Positioning System (GPS) measurements carried out in Chile over the last two decades showed that an entire portion of the Nazca-South America subduction zone (38°S–24°S) was locked over this period of time.The induced accumulation of elastic deformation in the upper-plate was not released until the recent Maule earthquake of 27 February 2010 (M_W 8.8) that ruptured the southern part of this section.Locking or coupling between the two plates varies both with depth and along strike.Here we use our own GPS data (an updated solution of our extended network in central Chile).combined with other published data sets,to quantify the spatial variations of the coupling that prevailed before the Maule earthquake.Using a simple elastic model based on the back-slip assumption,we show that coupling variations on the subduction plane are sufficient to explain the observed surface deformation,with no need of a sliver in central Chile.We identify four segments characterized by higher coupling and separated by narrow areas of lower coupling.This segmentation is in good agreement with historical and recent seismicity in Chile.In particular the narrow zones of lower coupling seem to have stopped most large seismic ruptures,including Maule's.These zones are often associated with irregular bathymetric or coastal features (fracture zones or peninsulas).Finally,coseismic and early post-seismic slip distribution of the Maule earthquake,occurring either in previously highly or weakly coupled zones,map a complex distribution of velocity-weakening and velocity-strengthening patches on the subduction interface.
机译:过去二十年来在智利进行的全球定位系统(GPS)测量显示,纳斯卡-南美洲俯冲带的整个区域(38°S–24°S)在这段时间内被锁定。直到2010年2月27日发生的最近的莫尔地震(M_W 8.8)才使该部分的南部破裂,上板的弹性变形才得以释放,两块板之间的锁定或耦合随深度和沿走向的变化而变化。我们自己的GPS数据(智利中部扩展网络的更新解决方案)与其他已发布的数据集相结合,以量化发生在莫尔地震之前的耦合的空间变化。使用基于后滑动的简单弹性模型假设,我们表明俯冲平面上的耦合变化足以解释观测到的表面变形,而在智利中部则不需要条子。我们确定了四个具有较高耦合度的段。 d由下部耦合的狭窄区域隔开。这种分割与智利的历史和最近地震活动很好地吻合,特别是下部耦合的狭窄区域似乎已阻止了包括Maule在内的大多数大地震破裂,这些区域通常与不规则地震有关。等距或沿海特征(断裂带或半岛)。莫勒地震的最后,顺震和早震滑移分布,发生在先前高度耦合或弱耦合的区域,描绘了速度减弱和速度强化斑块的复杂分布俯冲界面。

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