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A fully implicit and consistent finite element framework for modeling reservoir compaction with large deformation and nonlinear flow model. Part I: theory and formulation

机译:一个完全隐式且一致的有限元框架,用于建模具有大变形和非线性流动模型的储层压实。第一部分:理论与表述

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Reservoir depletion results in rock failure, wellbore instability, hydrocarbon production loss, oil sand production, and ground surface subsidence. Specifically, the compaction of carbonate reservoirs with soft rocks often induces large plastic deformation due to rock pore collapse. On the other hand, following the compaction of reservoirs and failure of rock formations, the porosity and permeability of formations will, in general, decrease. These bring a challenge for reservoir simulations because of high nonlinearity of coupled geomechanics and fluid flow fields. In this work, we present a fully implicit, fully coupled, and fully consistent finite element formulation for coupled geomechanics and fluid flow problems with finite deformation and nonlinear flow models. The Pelessone smooth cap plasticity model, an important material model to capture rock compaction behavior and a challenging material model for implicit numerical formulations, is incorporated in the proposed formulation. Furthermore, a stress-dependent permeability model is taken into account in the formulation. A co-rotational framework is adopted for finite deformation, and an implicit material integrator for cap plasticity models is consistently derived. Furthermore, the coupled field equations are consistently linearized including nonlinear flow models. The physical theories, nonlinear material and flow models, and numerical formulations are the focus of part I of this work. In part II, we verify the proposed numerical framework and demonstrate the performance of our numerical formulation using several numerical examples including a field reservoir with soft rocks undergoing serious compaction.
机译:储层枯竭会导致岩石破坏,井筒失稳,油气产量损失,油砂产量和地表沉陷。具体来说,由于岩石孔隙的塌陷,用软岩压实碳酸盐岩储层通常会引起较大的塑性变形。另一方面,随着储层的压实和岩石地层的破坏,地层的孔隙率和渗透率通常会下降。由于耦合的地质力学和流体流场的高度非线性,这些给储层模拟带来了挑战。在这项工作中,我们针对具有有限变形和非线性流动模型的耦合地质力学和流体流动问题,提出了一种完全隐式,完全耦合和完全一致的有限元公式。 Pelessone滑盖可塑性模型是捕获岩石压实行为的重要材料模型,并且对于隐式数值公式而言是具有挑战性的材料模型,已纳入拟议的公式中。此外,在配方中考虑了应力相关的渗透性模型。采用同向旋转框架进行有限变形,并一致地推导出帽塑性模型的隐式材料积分器。此外,耦合场方程始终如一地线性化,包括非线性流动模型。物理理论,非线性材料和流动模型以及数值公式是这项工作的第一部分。在第二部分中,我们验证了所提出的数值框架,并使用几个数值示例来证明我们的数值公式的性能,其中包括一个具有严重压实作用的软岩储层。

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