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Short-time postseismic deformation of 2001 Ms8.1 Kunlun (China) earthquake

机译:2001年昆仑Ms8.1地震的短期地震后变形

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After the Ms 8.1 Kunlun earthquake, postseismic displacements were resolved with GPS. The observed data showed that there were significant differences between the deformations on the south and the north sides of the Kunlun fault. In addition, it is shown that the direction of deformation on the north side shifted from westward to eastward after a short-time adjustment. Such GPS data are used as the constraints in finite element method (FEM) modeling of postseismic deformation. Using 3D poro-viscoelastic model, we show that the horizontal inhomogeneous viscosities in lower crust can play an important role in the geodynamic behavior. The best-fitting viscosities of lower crust are about 5.0 x 1017 Pa s, 9.0 x 1018 Pa s in Qiangtang block and Qaidam basin, respectively. The simulation suggests that the postseismic deformation of 2001 Kunlun Ms8.1 earthquake probably be caused by both the viscoelastic relaxation and poroelastic rebound.
机译:昆仑8.1级地震发生后,用GPS解决了地震后的位移。观测资料表明,昆仑断裂南北两侧的变形存在明显差异。另外,示出了在短时调整之后北侧的变形方向从西向东移动。此类GPS数据在地震后变形的有限元方法(FEM)建模中用作约束条件。使用3D孔隙粘弹性模型,我们表明下地壳中的水平非均质粘度可能在地球动力学行为中起重要作用。 tang塘区块和柴达木盆地下地壳的最佳拟合粘度分别为5.0 x 1017 Pa s,9.0 x 1018 Pa s。模拟表明,2001年昆仑Ms8.1地震的震后变形可能是由粘弹性松弛和孔隙弹性回弹引起的。

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