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首页> 外文期刊>Transport in Porous Media >On the Performance of the Node Control Volume Finite Element Method for Modeling Multi-phase Fluid Flow in Heterogeneous Porous Media
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On the Performance of the Node Control Volume Finite Element Method for Modeling Multi-phase Fluid Flow in Heterogeneous Porous Media

机译:在非均相多孔介质中的多相流体流动节点控制体积有限元方法的性能

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In this paper, we critique the performance of the node control volume finite element (NCVFE) method for modeling multi-phase fluid flow in heterogeneous media. The NCVFE method solves for the pressure at the vertices of elements and a control volume mesh is constructed around them. Material properties are defined on elements, while transport is simulated on the control volumes. These two meshes are not aligned producing inaccurate results and artificial fluid smearing when modeling multi-phase fluid flow in heterogeneous media. We perform numerical tests to quantify and visualize the extent of this artificial fluid smearing in domains with different material properties. The domains are composed of tetrahedron finite elements. Large artificial fluid smearing is observed in coarse meshes; however, it decreases with the increase in mesh resolution. These findings prompt the use of high-resolution meshes for the method and the need for development of novel numerical methods to address this unphysical flow.
机译:在本文中,我们批判了节点控制量有限元(NCVFE)方法的性能,用于在异构介质中建模多相流体流动。 NCVFE方法求解元件顶点的压力,并在它们周围构建控制容量网。材料属性在元件上定义,而在控制卷上模拟传输。当在异质介质中建模多相流体流动时,这两个网格不对在制造不准确的结果和人造流体涂抹时。我们进行数值测试以量化和可视化具有不同材料特性的结构域中涂抹的这种人造液的程度。域由四面体有限元组成。在粗网状物中观察大量的人造液涂抹;但是,它随着网格分辨率的增加而降低。这些调查结果促使使用高分辨率网格进行方法和需要开发新型数值方法来解决这种不受本文的流量。

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