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Coupled afterslip and transient mantle flow after the 2011 Tohoku earthquake

机译:2011年东北地震后的后滑和短暂地幔流耦合

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摘要

Modeling of postseismic deformation following great earthquakes has revealed the viscous structure of the mantle and the frictional properties of the fault interface. However, for giant megathrust events, viscoelastic flow and afterslip mechanically interplay with each other during the postseismic period. We explore the role of afterslip and viscoelastic relaxation and their interaction in the aftermath of the 2011 Mw (moment magnitude) 9.0 Tohoku earthquake based on a detailed model analysis of the postseismic deformation with laterally varying, experimentally constrained, rock rheology. Mechanical coupling between viscoelastic relaxation and afterslip notably modifies both the afterslip distribution and surface deformation. Thus, we highlight the importance of addressing mechanical coupling for long-term studies of postseismic relaxation, especially in the context of the geodynamics of the Japan trench across the seismic cycle.
机译:大地震后的地震变形模型揭示了地幔的粘性结构和断层界面的摩擦特性。但是,对于巨大的特大推力事件,在地震后,粘弹性流动和后滑在机械上相互影响。我们基于对地震后变形进行了侧向变化,受实验约束的岩石流变学的详细模型分析,探讨了滑坡和粘弹性松弛的作用及其在2011年Mw(矩震级)9.0东北地震余波中的作用。粘弹性松弛和后滑之间的机械耦合显着地改变了后滑分布和表面变形。因此,我们强调解决机械耦合问题对于地震后松弛的长期研究的重要性,尤其是在整个地震周期中日本海沟的地球动力学背景下。

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