组合两相流中平面与非平面裂缝油藏模拟

A. Zidane, A. Firoozabadi
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引用次数: 2

摘要

在这项工作中,我们提出了二维和三维非结构化网格中裂缝介质中两相组分流动的高阶数值模型。可容纳平面和非平面裂缝。我们的模型涵盖了所有常用的有限元类型;特别是2D中的四边形和三角形元素,以及3D中的六面体、棱镜和四面体元素。采用裂缝横流平衡(FCFE)概念对裂缝内流动进行建模。采用混合有限元法(MFE)和高阶不连续伽辽金法(DG)分别求解了流动方程和输运方程。我们开发了一个与网格生成器相连的计算机辅助设计(CAD)接口。使用非结构化四面体的接口,我们可以生成最复杂的断裂形状。据我们所知,我们生成/模拟的裂缝复杂性在过去没有报道过。与其他低渗透率裂缝影响结果准确性的模型不同,我们的模型可以模拟所有范围的裂缝渗透率值。通过二维和三维实例验证了该模型的有效性和准确性。
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Reservoir Simulation of Planar and Non-Planar Fractures in Compositional Two-Phase Flow
In this work we present a higher-order numerical model for two-phase compositional flow in fractured media in 2D and in 3D unstructured gridding. Both planar and non-planar fractures are accommodated. All commonly used types of finite elements are covered in our model; in particular, quadrangular and triangular elements in 2D, and hexahedra, prisms and tetrahedra elements in 3D. The fracture cross-flow equilibrium (FCFE) concept is adopted to model flow in the fractures. The hybridized mixed finite element (MFE) and the higher-order discontinuous Galerkin (DG) method are used to solve for the flow and the transport equations respectively. We have developed a computer-aided-design (CAD) interface connected to the mesh generator. Using this interface with the unstructured tetrahedra we can generate the most complicated fracture shapes. The complexity of fractures that we generate/simulate is not reported in the past to the best of our knowledge. Our model can simulate all range of fracture permeability values as opposed to other models where low permeable fractures affect the accuracy of the results. Efficiency and accuracy of our model are demonstrated in different examples in 2D and in 3D.
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