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Present-day deformation across the southwest Japan arc: Oblique subduction of the Philippine Sea plate and lateral slip of the Nankai forearc

机译:当今日本西南弧的变形:菲律宾海板的俯冲俯冲和南海前臂的侧滑

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摘要

We estimate long-term/permanent crustal deformation in the Nankai forearc, southwest Japan, that accumulated over one earthquake deformation cycle in the Nankai subduction zone. A short-term deformation due to an oblique subduction of the Philippine Sea plate is modeled based on coseismic fault slips associated with interplate thrust earthquakes at the Nankai Trough, and subtracted from the interseismic crustal velocity field observed by GPS. The long-term/permanent deformation left in the data shows arc-parallel movement of the forearc at a rate of 5-10 mm/yr. We interpret that the forearc movement, driven by the oblique plate convergence, is accommodated by steady aseismic slip on the deep portion of thefault plane of the Median Tectonic Line (MTL) on the rear boundary of the Nankai forearc. The rate of the forearc movement is consistent with the geological slip rate of the MTL in the late Quaternary, and also with that expected from deflection of the slip vector of the 1946 Nankai earthquake from the current plate convergence vector.
机译:我们估算了日本西南部南开前臂的长期/永久地壳变形,这些变形是在南开俯冲带的一个地震变形周期中累积的。基于与南开海槽板间推力地震有关的同震断层滑动,模拟了菲律宾海板斜向俯冲引起的短期变形,并从GPS观测到的地壳间速度场中减去了该值。数据中留下的长期/永久变形表明前臂的弧线平行运动速率为5-10 mm / yr。我们解释说,由斜板收敛作用驱动的前臂运动是由南开前臂后边界中构造线(MTL)断层平面深部的稳定抗震滑动所调节的。前臂运动的速率与第四纪晚期MTL的地质滑移速率一致,也与1946年南开地震的滑移矢量从当前板块收敛矢量的偏移所预期的速率一致。

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