首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Quasi-static fault slip on an interface between poroelastic media with different hydraulic diffusivity: A generation mechanism of afterslip
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Quasi-static fault slip on an interface between poroelastic media with different hydraulic diffusivity: A generation mechanism of afterslip

机译:不同水力扩散率的多孔弹性介质之间界面的准静态断层滑移:后滑的产生机理

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摘要

We theoretically study the generation mechanism of afterslip, assuming a two-dimensional in-plane fault on a bimaterial interface that separates poroelastic half-spaces with different hydraulic diffusivities; the deformation is assumed to be quasi-static. Our study shows that the coseismic faulting triggers quasi-static fault tip growth effectively because of positive feedback between the evolving fault slip and fluid pressure buildup. A similar study was made by Yamashita (2007), but he assumed the difference to be only in the Biot-Willis coefficient and undrained and drained Poisson's ratios. A comparison with the model of Yamashita (2007) shows that the diffusivity contrast is much more effective for the generation of afterslip. We also find that the fault tip is likely to extend unilaterally in the direction of slip in the medium of higher diffusivity; the duration of fault growth is longer for a larger diffusivity contrast. We find a scaling relationship in which the moment released by the quasi-static fault extension is approximated well by a linear function of the duration of fault growth. This is largely different from the expectations from a 2-D classical dynamic fault model; the moment is proportional to the square of duration of fault growth if the classical fault model is assumed.
机译:我们从理论上研究了滑移的产生机理,假设双材料界面上存在二维平面内断层,该断层将具有不同水力扩散率的多孔弹性半空间分开;假定变形为准静态。我们的研究表明,同震断层有效地触发了准静态断层尖端的增长,这是由于正在演化的断层滑动和流体压力累积之间的正反馈。 Yamashita(2007)进行了类似的研究,但他认为差异仅在于Biot-Willis系数以及不排水Poisson比率。与Yamashita(2007)模型的比较表明,扩散率对比对于后滑的产生更为有效。我们还发现,在较高扩散率的介质中,断层尖端可能会在滑移方向上单向延伸。对于较大的扩散率对比,断层生长的持续时间更长。我们发现了一个比例关系,其中准静态故障扩展所释放的力矩通过故障增长持续时间的线性函数很好地近似。这与二维经典动态故障模型的预期有很大不同。如果采用经典的断层模型,则该力矩与断层增长持续时间的平方成正比。

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