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Along-trench variation in seafloor displacements after the 2011 Tohoku earthquake

机译:2011年东北地震后海底位移的海沟变化

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摘要

The 2011 Tohoku-oki earthquake was the largest earthquake ever observed with seafloor geodetic techniques in and around its source region. Large crustal deformation associated with both the coseismic rupture and the rapid postseismic deformation has been reported. However, these observations are insufficient to describe the postseismic deformation processes occurring around the broad rupture area. We report the first results of seafloor Global Positioning System and acoustic ranging (GPS-A) observations based on repeated campaign surveys conducted over nearly 4 years using the extended GPS-A network deployed along the Japan Trench in September 2012. The observed postseismic displacement rates (DRs) show evident spatial variation along the trench: (i) distinct landward DRs in the large coseismic slip area [primary rupture area (PRA)], evidencing the predominance of viscoelastic relaxation; (ii) remarkable trenchward DRs in the south of the PRA, indicating rapid afterslip; and (iii) slight trenchward DRs in the north of the PRA. These features provide great insights into constructing a more complete model of viscoelastic relaxation, and they also indicate spatial variation of afterslip and fault locking along the plate interface with clear spatial resolution, providing invaluable information for the improvement of seismic hazard assessment.
机译:2011年的东北冲地震是有史以来使用海底大地测量技术观测到的最大地震。据报道,与同震破裂和快速的后震变形有关的大地壳变形。但是,这些观察结果不足以描述在宽破裂区域附近发生的地震后变形过程。我们报告了海底全球定位系统和声学测距(GPS-A)观测的最初结果,这些观测是基于2012年9月沿日本海沟部署的扩展GPS-A网络进行的近4年重复运动调查得出的。观测到的地震后位移率(DRs)沿海沟显示出明显的空间变化:(i)在大同震滑移区[一次破裂区(PRA)]中有明显的陆上DR,证明了粘弹性松弛的主要作用; (ii)PRA南部有明显的trench陷DR,表明快速滑移; (iii)PRA北部略带trench沟的DR。这些特征为构建更完整的粘弹性松弛模型提供了深刻的见解,并且还指示了沿板块界面的滑移和断层锁定的空间变化,具有清晰的空间分辨率,为改进地震危险性评估提供了宝贵的信息。

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