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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Influence of anelastic surface layers on postseismic thrust fault deformation
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Influence of anelastic surface layers on postseismic thrust fault deformation

机译:非弹性表层对地震后逆冲断层形变的影响

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摘要

We present the results of a systematic modeling study of postseismic deformation following blind thrust earthquakes. The results include qualitative and quantitative predictions' of the surface movement caused by relaxation in viscoelastic near-surface layers. Finite element forward models are used in conjunction with elastic dislocation inversions to characterize the postseismic deformation. A viscoelastic surface layer overlying a blind thrust fault in an elastic basement shows characteristic signatures of postseismic surface movement. Simple equivalent elastic dislocations located in the hanging wall wedge are found to provide an effective proxy for near-surface postseismic relaxation in two-dimensional numerical simulations. A model survey of a range of fault dip angles and layer geometries shows the time evolution and geometry of the proxy fault to be simply related to fault dip and sediment thickness. The results are of significance in the interpretation of postseismic Global Positioning System (CPS) strain data from the 1994 Northridge, California, earthquake and other similar events in regions characterized by poorly consolidated or otherwise anelastic layers overlying the brittle seismogenic zone. [References: 18]
机译:我们提出盲推力地震后地震变形的系统建模研究结果。结果包括由粘弹性近表层松弛引起的表面运动的定性和定量预测。有限元正演模型与弹性位错反演结合使用来表征地震后的变形。弹性基底中位于盲冲断层之上的粘弹性表层显示了地震后地表运动的特征性信号。发现位于悬壁楔形物中的简单等效弹性位错可为二维数值模拟中的近地表地震后松弛提供有效的代理。对一系列断层倾角和层几何形状的模型调查显示,代理断层的时间演化和几何形状与断层倾角和沉积物厚度简单相关。该结果对于解释1994年加利福尼亚州北岭,地震和其他类似事件的地震后全球定位系统(CPS)应变数据具有重要意义,这些地区的特征是脆​​性地震发生带上的固结差或无弹性层。 [参考:18]

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