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A comprehensive model of the deformation process in the Nagamachi-Rifu Fault Zone

机译:长町日府断裂带变形过程的综合模型

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A two-dimensional finite element model was constructed along a cross section almost perpendicular to the Nagamachi-Rifu Fault Zone, in order to clarify the stress accumulation process on an intraplate earthquake fault. We explain the surface deformations observed by the dense GPS network and leveling surveys using models with heterogeneities in the crust. These heterogeneities are identified from various geophysical surveys in the region. We found that the observed surface deformations cannot be explained by a model having a weak zone in the upper crust, but can be explained by models having a weak zone in the lower crust. Models having an aseismic fault or fault zone in the lower crust can reproduce the spatial pattern of the observed deformations, but amplitudes predicted by these models are smaller than those observed. The weak zone in the lower crust probably plays an important role in the stress accumulation process on the Nagamachi-Rifu fault zone.
机译:为了阐明板内地震断裂上的应力积累过程,沿几乎与长町理府断裂带垂直的断面构造了二维有限元模型。我们用地壳中具有非均质性的模型解释了密集的GPS网络和水准测量所观察到的表面变形。这些异质性可以从该地区的各种地球物理调查中识别出来。我们发现,观察到的表面变形不能用上地壳薄弱区域的模型来解释,而可以用下地壳薄弱区域的模型来解释。在下地壳中具有抗震断层或断层带的模型可以重现所观察到的变形的空间模式,但是这些模型所预测的振幅要小于所观察到的振幅。在Nagamachi-Rifu断裂带的应力积累过程中,下地壳的薄弱区域可能起着重要作用。

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