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Lithospheric folding by flexural slip in subduction zones as source for reverse fault intraslab earthquakes

机译:俯冲带挠曲滑动引起的岩石圈折叠是逆断层内地震的来源

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摘要

Subduction requires the permanent generation of a bend fold in the subducting slab which mechanics is not well understood. Lithospheric bending of subducting slabs was traditionally considered to be accommodated by orthogonal flexure, generating extensional outer rise earthquakes responsible of the external arc elongation during folding. Here we explore the possibility of lithospheric flexure being accommodated through simple shear deformation parallel to the slab (folding by flexural slip) and evaluate this process as source of earthquakes. The seismicity predicted by flexural slip dominated slab bending explains a significant amount of intermediate earthquakes observed in subduction zones with different degrees of coupling. This mechanism predicts the generation of intraslab thrust earthquakes with fault planes subparallel to the slab top. Being the orientations of the fault planes the same for the interface thrust earthquakes and the flexural-slip intraslab earthquakes, the amount of seismic moment liberated by the interface could be significantly lower than considered before. This proposed seismic source should be taken into account in models and hazard studies of subduction zones. Determining the seismic generating processes in subduction zones and their characteristics is a fundamental issue for the correct assessment of the associated seismic and tsunami risk.
机译:俯冲作用要求在俯冲板中永久产生弯曲褶皱,这在力学上尚不为人所知。传统上,俯冲板块的岩石圈弯曲被认为是通过正交挠曲来进行的,从而在折叠过程中产生了引起外弧伸长的拉伸外上升地震。在这里,我们探讨了通过平行于平板的简单剪切变形(通过挠曲滑动折叠)来适应岩石圈挠曲的可能性,并将这一过程评估为地震源。由弯曲滑动支配的平板弯曲预测的地震活动解释了在耦合程度不同的俯冲带中观察到的大量中间地震。该机制可预测断层与板顶平行的平板内推力地震的产生。由于界面推力地震和弯曲滑动平板内地震断层平面的方向相同,界面释放的地震矩的数量可能比以前考虑的要低得多。在俯冲带的模型和危险性研究中应考虑该提议的地震源。确定俯冲带的地震发生过程及其特征是正确评估相关地震和海啸风险的基本问题。

著录项

  • 期刊名称 Scientific Reports
  • 作者单位
  • 年(卷),期 -1(8),-1
  • 年度 -1
  • 页码 1367
  • 总页数 9
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

  • 入库时间 2022-08-21 10:56:00

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