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An efficient finite difference model for multiphase flow in fractured reservoirs

机译:裂缝性油藏多相流有效有限差分模型

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Considering the discontinuities of flow phase saturations at the matrix-fracture interfaces, a new difference model is proposed to simulate the multi-phase flow in reservoir with conductive fractures. Structure grids are applied in the simulation to divide reservoir regions, fracture grids are embedded in matrix grids, and reference nodes are chosen to define the exchanges between fracture and two sides of matrix. During solving the matrix equations, the discontinuities of phase saturations also lead to difficulties for defining the physical quantities on the matrix grids covering fracture, and to avoid this difficulty, inner boundary is used to replace these matrix grids in the computations. This model is used to simulate the reservoirs with straight and inclined fractures, and compared with discrete fracture model and embedded fracture model. The comparison shows that: no matter in fracture or matrix, the results from the new model are in good agreement with the discrete fracture model, but embedded fracture model has some error; the new fracture model can significantly improve the efficiency of simulation.
机译:考虑到基体-裂隙界面处流动相饱和度的不连续性,提出了一种新的差分模型来模拟含导电裂缝的储层中的多相流动。在模拟中应用结构网格划分储层区域,将裂缝网格嵌入矩阵网格中,并选择参考节点以定义裂缝与矩阵两侧之间的交换。在求解矩阵方程的过程中,相饱和的不连续性还导致难以定义覆盖裂缝的矩阵网格上的物理量,并且为了避免这种困难,在计算中使用内部边界替换了这些矩阵网格。该模型用于模拟直缝和斜缝的储层,并与离散裂缝模型和埋藏裂缝模型进行了比较。比较表明:无论是裂缝还是基体,新模型的计算结果与离散裂缝模型吻合较好,但埋藏裂缝模型存在一定误差。新的裂缝模型可以显着提高仿真效率。

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