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首页> 外文期刊>Geophysical Research Letters >First measurement of the displacement rate of the Pacific Plate near the Japan Trench after the 2011 Tohoku-Oki earthquake using GPS/acoustic technique
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First measurement of the displacement rate of the Pacific Plate near the Japan Trench after the 2011 Tohoku-Oki earthquake using GPS/acoustic technique

机译:使用GPS /声学技术首次测量2011年东北冲地震后日本海沟附近太平洋板块的位移率

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摘要

The subduction rate of an oceanic plate may accelerate after large earthquakes rupture the interplate coupling between the oceanic and overriding continental plates. To better understand postseismic deformation processes in an incoming oceanic plate, we directly measured the displacement rate of the Pacific Plate near the Japan Trench after the 2011 Tohoku-Oki earthquake using a GPS/acoustic technique over a period of 2years (September 2012 to September 2014). The displacement rate was measured to be 18.0 +/- 4.5 cm yr(-1) (N302.0 degrees E) relative to the North American Plate, which is almost twice as fast as the predicted interseismic plate motion. Because the sum of steady plate motion and viscoelastic response to the Tohoku-Oki earthquake roughly accounts for the observed displacement rate, we conclude that viscoelastic relaxation is the primary mechanism responsible for postseismic deformation of the Pacific Plate and that significant subduction acceleration did not occur at least not during the observation period.
机译:在大地震破坏了大洋板块与上覆大陆板块之间的板间耦合之后,大洋板块的俯冲速率可能会加快。为了更好地了解传入洋板块的地震后变形过程,我们使用GPS /声学技术在2年期间(2012年9月至2014年9月)直接测量了日本海沟附近太平洋板块在2011年东北冲积地震后的位移速率。 )。相对于北美板块,测得的位移速率为18.0 +/- 4.5 cm yr(-1)(N302.0度东),几乎快于预计的地震板块运动的两倍。由于板块稳定的运动和对东北冲壤地震的粘弹性响应的总和大致解释了观测到的位移速率,因此我们得出结论,粘弹性松弛是造成太平洋板块地震后变形的主要机制,并且在该地震发生时俯冲加速度并未发生至少在观察期内没有。

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