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Coseismic seafloor deformation in the trench region during the Mw8.8 Maule megathrust earthquake

机译:Mw8.8 Maule特大推力地震沟槽区的同震海底变形。

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摘要

The Mw 8.8 megathrust earthquake that occurred on 27 February 2010 offshore the Maule region of central Chile triggered a destructive tsunami. Whether the earthquake rupture extended to the shallow part of the plate boundary near the trench remains controversial. The up-dip limit of rupture during large subduction zone earthquakes has important implications for tsunami generation and for the rheological behavior of the sedimentary prism in accretionary margins. However, in general, the slip models derived from tsunami wave modeling and seismological data are poorly constrained by direct seafloor geodetic observations. We difference swath bathymetric data acquired across the trench in 2008, 2011 and 2012 and find ∼3-5 m of uplift of the seafloor landward of the deformation front, at the eastern edge of the trench. Modeling suggests this is compatible with slip extending seaward, at least, to within ∼6 km of the deformation front. After the Mw 9.0 Tohoku-oki earthquake, this result for the Maule earthquake represents only the second time that repeated bathymetric data has been used to detect the deformation following megathrust earthquakes, providing methodological guidelines for this relatively inexpensive way of obtaining seafloor geodetic data across subduction zone.
机译:2010年2月27日,智利中部毛勒地区近海发生8.8兆瓦兆瓦级地震,引发了破坏性海啸。地震破裂是否扩展到靠近沟槽的板块边界的浅部尚存争议。大俯冲带地震中破裂的上倾极限对海啸的产生和沉积棱柱在增生边缘的流变行为具有重要意义。但是,总的来说,从海啸波模型和地震数据得出的滑动模型受海底大地直接观测的约束很弱。我们对在2008年,2011年和2012年在整个海沟中获得的条带测深数据进行了比较,发现海沟东缘海底变形前沿海底隆起约3-5 m。模拟表明,这与向海延伸的滑移兼容,至少滑移到变形锋约6 km以内。在东北9.0级地震之后,毛勒地震的结果仅是第二次使用重复的测深数据来探测大推力地震后的形变,为这种相对便宜的方法获得了俯冲过程中获得海底大地数据的方法提供了方法学指导区。

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