控制音量
有限体积法
有限元法
网格
非结构网格
规则网格
多相流
光滑有限元法
质量守恒
方向(向量空间)
混合有限元法
扩展有限元法
有限差分
代表(政治)
数学优化
间断伽辽金法
点(几何)
计算机科学
流量(数学)
几何学
数学
机械
数学分析
工程类
边界节点法
物理
结构工程
边界元法
政治
政治学
法学
作者
Larry S. Fung,Allan Hiebert,Long X. Nghiem
出处
期刊:SPE reservoir engineering
[Society of Petroleum Engineers]
日期:1992-08-01
卷期号:7 (03): 349-357
被引量:125
摘要
Summary This paper describes a control-volume finite-element (CVFE) method incorporating linear triangular elements for the simulation of thermal multiphase flow in porous media. The technique adopts the usual finite-element shape functions to evaluate flow potentials at the control-volume boundaries and uses the conservation equations for each control volume. The main advantage of the CVFE method over the finite-difference method is in the representation of complex reservoir geometries. In addition, desirable features, such as local grid refinement for near-well resolution, can be achieved simply and consistently. The control-volume approach enforces local mass conservation and permits a direct physical interpretation of the resulting discrete equations. These are significant advantages over the classical Petrov-Galerkin or variational finite-element methods. The method was implemented in a general-purpose thermal simulator. Numerical examples compare the proposed method with five-point and nine-point finite-difference schemes in terms of grid-orientation effects and run time. The CVFE method was found to reduce grid-orientation effects significantly. At the same time, computational cost was much lower than for the nine-point scheme. The geometric flexibility of the method also is demonstrated.
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