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Tsunamigenic structures in a creeping section of the Alaska subduction zone

机译:阿拉斯加俯冲区的爬行部分中的海啸结构

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Segments of subduction zones that are capable of generating tsunamigenic earthquakes appear to have characteristic structural configurations. These structures include heterogeneous plate interfaces, a small wedge of deformed sediment at the toe of the overriding plate (the frontal prism), and splay faults in the crust of the overriding plate that root within the plate boundary megathrust. Here we use seismic reflection imaging to show that these features also exist within a creeping segment of the Alaska subduction zone, the Shumagin Gap. We identify an active crustal-scale normal fault system that dips landward and resembles that involved in the 2011 Tohoku-oki earthquake in Japan. We also find that the Shumagin Gap has a small frontal prism, a deep-water splay fault, and that the plate interface here is rough and thinly sedimented. We propose that lateral propagation of rupture from a neighbouring segment into the Shumagin Gap may explain a tsunamigenic earthquake that occurred there in 1788 and that tsunamigenic potential should be considered in hazard assessments for the region. Our results demonstrate that structural configurations similar to those in Tohoku may exist in other subduction zones, including within creeping segments or segments with no record of historical megathrust earthquakes, but are under-recognized. Identifying similar configurations globally may improve our ability to anticipate regions capable of generating large tsunamis.
机译:能够产生海啸地震的俯冲区的区段似乎具有特征结构配置。这些结构包括异质板界面,在覆盖板(前棱柱)的脚趾处的脚趾处的变形沉积物的小楔形,以及在板边界巨大内部的覆盖板的地壳中的肖像故障。在这里,我们使用地震反射成像表明这些特征也存在于阿拉斯加俯冲区的爬行区内,Shumagin差距。我们确定一个积极的地壳规模正常故障系统,逢低落地,类似于日本的2011年东北冈比地震。我们还发现,Shumagin差距有一个小的正面棱镜,深水剧本,并且这里的板界面粗糙,薄薄沉淀。我们提出从邻近区段进入Shumagin差距的横向传播可以解释在1788年发生的海啸地震,并且应在该地区的危险评估中考虑海啸潜力。我们的结果表明,类似于Ohoku的结构配置可能存在于其他俯冲区域中,包括在没有历史巨大地震的记录中的爬行段或段中,但被公认。全球识别类似的配置可以提高我们预测能够产生大海啸的地区的能力。

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