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Modelling fault reactivation with characteristic stress-drop terms

机译:使用特征应力降项对故障重新激活进行建模

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Abstract. Predicting shear failure that leads to the reactivation of faults during the injection of fluids in the subsurface is difficult since it inherently involves an enormous complexity of flow processes interacting with geomechanics. However, understanding and predicting induced seismicity is of great importance. Various approaches to modelling shear failure have been suggested recently. They are all dependent on the prediction of the pressure and stress field, which requires the solution of partial differential equations for flow and for geomechanics. Given a pressure and corresponding mechanical responses, shear slip can be detected using a failure criterion. We propose using characteristic values for stress drops occurring in a failure event as sinks in the geomechanical equation. This approach is discussed in this article and illustrated with an example.
机译:抽象。预测导致地下流体注入过程中断层重新激活的剪切破坏是困难的,因为它固有地涉及与地质力学相互作用的流动过程的极大复杂性。但是,了解和预测诱发地震活动非常重要。最近已经提出了各种模拟剪切破坏的方法。它们都取决于压力场和应力场的预测,这需要求解流动和地质力学的偏微分方程。给定压力和相应的机械响应,可以使用破坏准则检测剪切滑移。我们建议将特征值用于故障事件中发生的应力降,作为地质力学方程中的下沉。本文讨论了这种方法,并通过示例进行了说明。

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