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Stress loading from viscous flow in the lower crust and triggering of aftershocks following the 1994 Northridge, California, earthquake

机译:1994年加利福尼亚州北岭大地震后,下地壳中的粘性流动引起的应力载荷和余震的触发

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Following the M_w 6.7 Northridge earthquake, significant postseismic displacements were resolved with GPS. Using a three-dimensional viscoelastic model, we suggest that this deformation is mainly driven by viscous flow in the lower crust. Such flow can transfer stress to the upper crust and load the rupture zone of the main shock at a decaying rate. Most aftershocks within the rupture zone, especially those that occurred after the first several weeks of the main shock, may have been triggered by continuous stress loading from viscous flow. The long-term decay time of aftershocks (about 2 years) approximately matches the decay of viscoelastic loading, and thus is controlled by the viscosity of the lower crust. Our model provides a physical interpretation of the observed correlation between aftershock decay rate and surface heat flow.
机译:在北里氏6.7级地震之后,GPS解决了重大的地震后位移。使用三维粘弹性模型,我们认为这种变形主要是由下地壳中的粘性流驱动的。这种流动可以将应力传递到上地壳,并以衰减速率加载主震破裂区域。破裂区内的大多数余震,尤其是在主震最初几周后发生的余震,可能是由粘性流不断施加的应力触发的。余震的长期衰减时间(约2年)大致与粘弹性载荷的衰减相匹配,因此受下地壳的粘度控制。我们的模型对观察到的余震衰减率与表面热流之间的相关性提供了物理解释。

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