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Accretionary prism collapse: a new hypothesis on the source of the 1771 giant tsunami in the Ryukyu Arc SW Japan

机译:增生棱镜坍塌:日本西南部琉球弧1771年海啸发生的新假说

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摘要

The giant 1771 Yaeyama tsunami occurred in the southwestern part of the Ryukyu Arc, a region on an obliquely subducting plate boundary, which shows no direct evidence of inter-plate coupling. Studies of tsunami boulders and deposits suggest that the recurrence interval of comparably giant tsunamis is roughly 500 to 1000 years. Tsunami source models, which include either slip on a shallow plate boundary or active faulting plus a landslide on the overriding plate, are controversial because of inconsistencies in the geophysical and geological data. We discovered a seafloor depression that is approximately 30 km wide and 80 km long extending in the ESE-WNW direction. This depression is accompanied by a seaward bulge on the accretionary prism along the Ryukyu Trench, which is based on detailed bathymetric data and interpreted to be the result of accretionary prism collapse and seaward displacement by rotational slide. A simple tsunami simulation shows that the slide is a plausible source of the 1771 tsunami. We propose a collapse model, in which the accretionary prism remained over-steepened as strike-slip faulting removed the prism toe. Our model indicates that some oblique subduction zones are capable of generating giant tsunamis regardless of weak or strong coupling.
机译:1771年巨大的八重山海啸发生在琉球弧西南部,该区域位于俯冲板块斜向边界上,没有直接证据表明板间耦合。海啸巨石和沉积物的研究表明,相对较大的海啸的复发间隔大约为500至1000年。由于地球物理和地质数据的不一致,海啸源模型(包括在浅盘边界上的滑动或活动断层加上上覆盘上的滑坡)引起争议。我们发现了沿ESE-WNW方向延伸的海底凹陷,宽约30千米,长80千米。这种凹陷伴随着沿琉球海沟的增生棱镜上的向海凸起,这是基于详细的测深数据,并被解释为增生棱镜塌陷和旋转滑动导致的向海位移的结果。一个简单的海啸模拟表明,这张幻灯片是1771年海啸的合理来源。我们提出了一种坍塌模型,其中走滑断层将棱镜的趾部移开,使增生棱镜保持过高的强度。我们的模型表明,无论弱耦合还是强耦合,一些斜向俯冲带都能够产生巨大的海啸。

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