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Interface control volume finite element method for modelling multi-phase fluid flow in highly heterogeneous and fractured reservoirs

机译:高非均质裂缝性油藏中多相流体流动的界面控制体积有限元方法

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We present a new control volume finite element method that improves the modelling of multi-phase fluid flow in highly heterogeneous and fractured reservoirs, called the Interface Control Volume Finite Element (ICVFE) method. The method drastically decreases the smearing effects in other CVFE methods, while being mass conservative and numerically consistent. The pressure is computed at the interfaces of elements, and the control volumes are constructed around them, instead of at the elements' vertices. This assures that a control volume straddles, at most, two elements, which decreases the fluid smearing between neighbouring elements when large variations in their material properties are present. Lowest order Raviart-Thomas vectorial basis functions are used for the pressure calculation and first-order Courant basis functions are used to compute fluxes. The method is a combination of Mixed Hybrid Finite Element (MHFE) and CVFE methods. Its accuracy and convergence are tested using three dimensional tetrahedron elements to represent heterogeneous reservoirs. Our new approach is shown to be more accurate than current CVFE methods. (C) 2015 Elsevier Inc. All rights reserved.
机译:我们提出了一种新的控制体积有限元方法,称为界面控制体积有限元(ICVFE)方法,该方法改进了高度非均质和裂缝性储层中多相流体流动的建模。该方法大大降低了其他CVFE方法中的拖尾效应,同时具有质量保守性和数值一致性。在单元的界面处计算压力,并围绕它们构建控制量,而不是在单元的顶点处。这确保了控制体积最多跨越两个元素,当它们的材料属性存在较大差异时,这会减少相邻元素之间的流体涂抹。最低阶Raviart-Thomas向量基函数用于压力计算,一阶库兰特基函数用于计算通量。该方法是混合混合有限元(MHFE)和CVFE方法的组合。使用三维四面体元素代表非均质油藏测试了其准确性和收敛性。我们的新方法显示出比当前的CVFE方法更准确。 (C)2015 Elsevier Inc.保留所有权利。

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