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首页> 外文期刊>Geophysical Research Letters >Afterslip and viscoelastic relaxation following the 2011 Tohoku-oki earthquake (Mw9.0) inferred from inland GPS and seafloor GPS/Acoustic data
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Afterslip and viscoelastic relaxation following the 2011 Tohoku-oki earthquake (Mw9.0) inferred from inland GPS and seafloor GPS/Acoustic data

机译:根据内陆GPS和海底GPS /声学数据推断出的2011年东北冲地震(Mw9.0)后的滑移和粘弹性松弛

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摘要

We simultaneously estimate 2.5years of afterslip and viscoelastic relaxation, as well as coseismic slip, for the 2011 Tohoku-oki earthquake. Displacements at inland GPS and seafloor GPS/Acoustic stations are inverted using viscoelastic Green's functions for a model with an upper elastic layer and lower viscoelastic substrate. The result shows that afterslip is isolated from the rupture area and possibly asperities of historical earthquakes and has almost decayed by 10 September 2013, 2.5years after the main shock. The inversion result also suggests that observed landward postseismic displacements at the seafloor GPS/Acoustic stations are caused by the viscoelastic relaxation, whereas trenchward displacements at inland stations are mainly an elastic response to afterslip.
机译:我们同时估算了2011年东北冲地震发生的2.5年后滑和粘弹性松弛以及同震滑动。对于具有上弹性层和下粘弹性底物的模型,使用粘弹性格林函数将内陆GPS和海底GPS /声学站的位移反转。结果表明,滑移与破裂区域和可能的历史地震波峰隔离,并且在主震发生2.5年后的2013年9月10日几乎已经衰减。反演结果还表明,在海底GPS /声学站观测到的陆后地震位移是由粘弹性松弛引起的,而内陆站的沟内位移主要是对后滑的弹性响应。

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