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3D conforming power diagrams for radial LGR in CPG reservoir grids

机译:CPG油藏网格中径向LGR的3D符合功率图

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摘要

Mesh generation becomes a crucial step in reservoir flow simulation of new generation. The mesh must faithfully represent the architecture of the reservoir and its heterogeneity. In (Flandrin et al. in IJNME 65(10): 1639-1672, 2006) a three-dimensional hybrid mesh model was proposed to capture the radial characteristics of the flow around the wells. In this hybrid mesh, the reservoir is described by a non-uniform Cartesian structured mesh and the drainage areas around the wells are represented by structured radial circular meshes. Unstructured polyhedral meshes are used to connect these two kinds of structured grids. The construction of these transition meshes is based on 3D power diagrams (Aurenhammer in SIAM J Comput 16(l):78-96, 1987) to ensure finite volume properties such as mesh conformity, dual orthogonality and cell convexity. In this paper, we propose an extension of this hybrid model to the case where the reservoir is described by a corner point geometry (CPG) grid. At first, the CPG grid is mapped, in a reference space, into a non-uniform Cartesian grid by minimizing the mapping deformation. Then, a hybrid mesh is generated in this reference space using the previous method. Finally, this mesh is mapped back into the real space. Some quality criterions are introduced tornmeasure and improve the quality of the polyhedral transition mesh.
机译:网格生成已成为新一代油藏流动模拟中的关键步骤。网格必须忠实地代表储层的构造及其非均质性。在(Flandrin等人,IJNME 65(10):1639-1672,2006)中,提出了三维混合网格模型以捕获井周围流的径向特征。在这种混合网格中,储层由非均匀的笛卡尔结构化网格描述,井周围的排水区域由结构化的径向圆形网格表示。非结构化多面网格用于连接这两种结构化网格。这些过渡网格的构造基于3D功率图(Aurenhammer in SIAM J Comput 16(1):78-96,1987),以确保有限的体积属性,例如网格一致性,对偶正交性和单元凸度。在本文中,我们建议将此混合模型扩展到用角点几何(CPG)网格描述储层的情况。首先,通过最小化映射变形,将CPG网格在参考空间中映射到非均匀的笛卡尔网格中。然后,使用先前的方法在此参考空间中生成混合网格。最后,该网格被映射回真实空间。引入了一些衡量质量的标准,以提高多面体过渡网的质量。

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