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Geomechanical paleostress inversion using fracture data

机译:利用裂缝数据进行古力学古应力反演

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We describe a fast geomechanically-based paleostress inversion technique that uses observed fracture data to constrain stress through multiple simulations. The method assumes that the local stress field around individual fractures is heterogeneous and derives the far field tectonic stress, that we also call the far field boundary conditions. We show how such far field tectonic stress can be recovered through a mechanical stress inversion technique using local observations of natural fractures (i.e. mechanical type, orientation and location). We test the paleostress inversion against outcrop analogues of fractured carbonates from both Nash Point, U.K., where there are well exposed faults and joints and the Matelles, France, where there are well exposed faults, veins and stylolites. We demonstrate through these case studies how the method can be efficiently applied to natural examples and we highlight its advantages and limitations. We discuss how such method could be applied to subsurface problems and how it can provide complementary constraints to drive discrete fracture models for better fractured reservoir characterization and modelling. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们描述了一种基于地质力学的快速古应力反演技术,该技术使用观测到的裂缝数据通过多次模拟来约束应力。该方法假设单个裂缝周围的局部应力场是非均质的,并得出远场构造应力,我们也称远场边界条件。我们展示了如何通过机械应力反演技术利用对天然裂缝的局部观测(即机械类型,方向和位置)来恢复这种远场构造应力。我们测试了英国纳什角(Nash Point)断裂碳酸盐的露头类似物的古应力反演,该断裂带碳酸盐岩的断层和节理都很好暴露,而法国的Matelles断裂带,脉状和花岗石也很暴露。通过这些案例研究,我们将演示如何将该方法有效地应用于自然实例,并强调其优势和局限性。我们讨论了如何将这种方法应用于地下问题,以及如何提供补充约束条件来驱动离散裂缝模型,以便更好地进行裂缝储层表征和建模。 (C)2016 Elsevier Ltd.保留所有权利。

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