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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Segmentation of megathrust rupture zones from fore-arc deformation patterns over hundreds to millions of years, Arauco peninsula, Chile
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Segmentation of megathrust rupture zones from fore-arc deformation patterns over hundreds to millions of years, Arauco peninsula, Chile

机译:智利Arauco半岛数百年到数百万年间从前弧形变模式划分的大推力破裂带

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This work explores the control of fore-arc structure on segmentation of megathrust earthquake ruptures using coastal geomorphic markers. The Arauco-Nahuelbuta region at the south-central Chile margin constitutes an anomalous fore-arc sector in terms of topography, geology, and exhumation, located within the overlap between the Concepcion and Valdivia megathrust segments. This boundary, however, is only based on i<500 years of historical records. We integrate deformed marine terraces dated by cosmogenic nuclides, syntectonic sediments, published fission track data, seismic reflection profiles, and microseismicity to analyze this earthquake boundary over 102-106 years. Rapid exhumation of Nahuelbuta's dome-like core started at 4iA1.2 Ma, coeval with inversion of the adjacent Arauco basin resulting in emergence of the Arauco peninsula. Here, similarities between topography, spatiotemporal trends in fission track ages, Pliocene-Pleistocene growth strata, and folded marine terraces suggest that margin-parallel shortening has dominated since Pliocene time. This shortening likely results from translation of a fore-arc sliver or microplate, decoupled from South America by an intra-arc strike-slip fault. Microplate collision against a buttress leads to localized uplift at Arauco accrued by deep-seated reverse faults, as well as incipient oroclinal bending. The extent of the Valdivia segment, which ruptured last in 1960 with an M_w 9.5 event, equals the inferred microplate. We propose that mechanical homogeneity of the fore-arc microplate delimits the Valdivia segment and that a marked discontinuity in the continental basement at Arauco acts as an inhomogeneous barrier controlling nucleation and propagation of 1960-type ruptures. As microplate-related deformation occurs since the Pliocene, we propose that this earthquake boundary and the extent of the Valdivia segment are spatially stable seismotectonic features at million year scale.
机译:这项工作探索了使用沿海地貌标志物控制前拱构造对大推力地震破裂的分割。智利中南部边缘的Arauco-Nahuelbuta地区在地形,地质和发掘方面构成了异常的前弧区,位于康塞普西翁和瓦尔迪维亚超大推力段的交叠处。但是,此边界仅基于i <500年的历史记录。我们整合了由宇宙成因核素,同构造沉积物,已发布的裂变径迹数据,地震反射剖面和微震性确定的变形海洋阶地,以分析这个102-106年的地震边界。 Nahuelbuta圆顶状核心的快速发掘始于4iA1.2 Ma,与相邻的Arauco盆地倒置同时导致Arauco半岛的出现。在这里,地形之间的相似性,裂变径迹时空的时空趋势,上新世至更新世的生长地层以及折叠的海相阶地表明,自上新世以来,边缘平行缩短一直占主导地位。这种缩短可能是由于弧内走滑断层与南美洲解耦而导致的前条或微孔板的平移。微孔板与支撑的碰撞导致Arauco的局部隆起,这是由于深深的反向断层以及初期的眼眶弯曲引起的。 1960年最后一次M_w 9.5事件破裂的瓦尔迪维亚段的范围等于推断的微孔板。我们提出,前微孔板的机械同质性界定了瓦尔迪维亚段,并且Arauco大陆基底的明显不连续性起控制1960年型破裂成核和扩散的不均匀屏障的作用。由于上新世以来发生了与微板有关的变形,因此我们认为该地震边界和瓦尔迪维亚段的范围是百万年尺度上空间稳定的地震构造特征。

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