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Influence of pore pressure change on coseismic volumetric strain

机译:孔隙压力变化对皮塞体积菌株的影响

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摘要

Coseismic strain is fundamentally important for understanding crustal response to changes of stress after earthquakes. The elastic dislocation model has been widely applied to interpreting observed shear deformation caused by earthquakes. The application of the same theory to interpreting volumetric strain, however, has met with difficulty, especially in the far field of earthquakes. Predicted volumetric strain with dislocation model often differs substantially, and sometimes of opposite signs, from observed coseismic volumetric strains. The disagreement suggests that some processes unaccounted for by the dislocation model may occur during earthquakes. Several hypotheses have been suggested, but none have been tested quantitatively. In this paper we first examine published data to highlight the difference between the measured and calculated static coseismic volumetric strains; we then use these data to provide quantitative test of the model that the disagreement may be explained by the change of pore pressure in the shallow crust. The test allows us to conclude that coseismic change of pore pressure may be an important mechanism for coseismic crustal strain and, in the far field, may even be the dominant mechanism. Thus in the interpretation of observed coseismic crustal strain, one needs to account not only for the elastic strain due to fault rupture but also for the strain due to coseismic change of pore pressure. (C) 2017 Elsevier B.V. All rights reserved.
机译:由于在地震后理解地壳反应的地壳反应,电影菌株根本重要。弹性脱位模型已被广泛应用于解释由地震引起的观察到的剪切变形。然而,相同理论对解释体积应变的应用已经遇到困难,特别是在地震的远场。预测具有位错模型的体积应变通常与观察到的皮塞体积菌株的相反符号基本上基本上不同。分歧表明,在地震期间可能会出现不脱位模型未占用的一些过程。已经提出了几个假设,但没有人已经定量进行了测试。在本文中,我们首先检查已发布的数据,以突出测量和计算的静态电影体积体积菌株之间的差异;然后,我们使用这些数据来提供模型的定量测试,即可以通过浅地壳中的孔隙压力的变化来解释分歧。该测试使我们得出结论,孔隙压力的电影发生变化可能是用于电影症地壳菌株的重要机制,并且在远场中,甚至可能是主要机制。因此,在观察到的皮塞结壳菌株的解释中,需要考虑由于故障破裂引起的弹性应变,而且由于孔隙压力的电影发生变化,菌株也是如此。 (c)2017年Elsevier B.V.保留所有权利。

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