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Interplate locking condition derived from seafloor geodetic observation in the shallowest subduction segment at the Central Nankai Trough, Japan

机译:在日本中央南开槽的浅层俯视段中衍生自海底大地地理位气观察的Interopt锁定条件

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摘要

We monitored seafloor crustal deformation at two observation stations on opposite sides of the Nankai Trough from 2013 to 2016 in order to investigate the interplate locking condition along the Central Nankai Trough. We estimated the seafloor crustal deformation with respect to the Amurian Plate based on five observations. The results for two stations, TCA and TOA, were 38 +/- 25 mm/yr toward N78 degrees W and 5 +/- 21 mm/yr toward N69 degrees W (1 sigma), respectively. The displacement rate at TOA is consistent with the motion of the Philippine Sea Plate with respect to the Amurian Plate using the Euler vector of the REVEL model. The displacement rate at TCA is similar to that at other seafloor geodetic stations, e.g., 48 +/- 10 mm/yr at KUM2 station, on the Kumano Basin. The interplate coupling rate was estimated to be roughly 70 +/- 40% (1 sigma) in the shallowest segment of the Nankai Trough.
机译:从2013年到2016年,我们在南开谷两侧的两个观察站上监测了海底地壳变形,以便沿着中央南开槽沿着互连锁定条件进行调查。 我们估计了基于五个观察结果相对于亚马里亚板的海底地壳变形。 两个站,TCA和TOA的结果分别朝向N78°W和5 +/- 21mm / YR朝向N69°W(1 sigma)的38 +/- 25mm / Yr。 TOA的位移率与菲律宾海板相对于使用雷红色模型的欧拉·载体相对于氨水板的运动。 TCA的位移率类似于其他海底大地电站,例如在Kum2 Station的48 +/- 10毫米/年,在Kumano盆地。 南开槽的最浅段估计代号耦合速率大约为70 +/- 40%(1秒)。

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