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首页> 外文期刊>Journal of earth system science >On a model simulating lack of hydraulic connection between a man-made reservoir and the volume of poroelastic rock hosting the focus of a post-impoundment earthquake
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On a model simulating lack of hydraulic connection between a man-made reservoir and the volume of poroelastic rock hosting the focus of a post-impoundment earthquake

机译:在模拟人造水库与容纳蓄水后地震焦点的多孔弹性岩石之间缺乏液压连接的模型

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摘要

The idea that a direct hydraulic connection between a man-made reservoir and the foci of postimpoundment earthquakes may not exist at all sites is eminently credible on geological grounds. Our aim is to provide a simple earth model and related theory for use during investigations of earthquakes near new man-made reservoirs. We consider a uniform circular reservoir which rests on the top surface of a no-hydraulic-connection earth model (NHCEM). The model comprises a top elastic (E) layer, an intermediate poroelastic (P) layer, and a bottom elastic half space. The focus of a potential earthquake in the P layer is located directly under the reservoir. The E layer disrupts the hydraulic connection between the reservoir and the focus. Depth of water in the reservoir varies as H'+h cos(?‰t). Expressions for reservoir-induced stresses and pore pressure in different layers of the NHCEM are obtained by solving the boundary-value problem invoking full coupling between mean normal stress and pore pressure in the P layer. As an application of the derived mathematical results, we have examined and found that earthquakes on 60?° normal faults may occur in the P-layer of a selected NHCEM at epochs of low reservoir level if the reservoir lies mostly in the footwall of the fault. The exercise was motivated by observations of such earthquakes under the man-made Lake Mead after it was impounded
机译:在地质基础上,在所有地点都可能不存在人造水库与蓄水后地震震源之间没有直接液压连接的想法是可信的。我们的目的是提供一个简单的地球模型和相关理论,以用于调查新的人造水库附近的地震。我们考虑一个均匀的圆形储层,它位于无液压连接地球模型(NHCEM)的顶面上。该模型包括顶部弹性(E)层,中间多孔弹性(P)层和底部弹性半空间。 P层中潜在地震的焦点位于储层正下方。 E层破坏了储层和焦点之间的液压连接。储层中的水深随H'+ h cos(?‰t)而变化。通过解决在P层中引起平均法向应力和孔隙压力之间完全耦合的边界值问题,可以得到NHCEM不同层中的储层诱导应力和孔隙压力的表达式。作为推导的数学结果的应用,我们已经检查并发现,如果储层主要位于断层的下盘壁,则选定的NHCEM的P层可能会在低储层水平的时期发生60?°正断层的地震。 。演习的动机是在人工蓄积米德湖后观察这种地震

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