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Higher resolution total velocity Vt and Va finite-volume formulations on cell-centred structured and unstructured grids

机译:在以单元为中心的结构化和非结构化网格上更高分辨率的总速度Vt和Va有限体积公式

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Novel cell-centred finite-volume formulations are presented for incompressible and immiscible two-phase flow with both gravity and capillary pressure effects on structured and unstructured grids. The Darcy-flux is approximated by a control-volume distributed multipoint flux approximation (CVD-MPFA) coupled with a higher resolution approximation for convective transport. The CVD-MPFA method is used for Darcy-flux approximation involving pressure, gravity, and capillary pressure flux operators. Two IMPES formulations for coupling the pressure equation with fluid transport are presented. The first is based on the classical total velocity Vt fractional flow (Buckley Leverett) formulation, and the second is based on a more recent Va formulation. The CVD-MPFA method is employed for both Vt and Va formulations. The advantages of both coupled formulations are contrasted. The methods are tested on a range of structured and unstructured quadrilateral and triangular grids. The tests show that the resulting methods are found to be comparable for a number of classical cases, including channel flow problems. However, when gravity is present, flow regimes are identified where the Va formulation becomes locally unstable, in contrast to the total velocity formulation. The test cases also show the advantages of the higher resolution method compared to standard first-order single-point upstream weighting.
机译:提出了新的以细胞为中心的有限体积公式,用于不可压缩和不可混溶的两相流,重力和毛细压力对结构化和非结构化网格都有影响。达西通量通过控制量分布多点通量近似(CVD-MPFA)以及对流输运的高分辨率近似来近似。 CVD-MPFA方法用于涉及压力,重力和毛细管压力通量算子的达西通量近似。提出了两种将压力方程与流体传输耦合的IMPES公式。第一种基于经典的总速度Vt分流(Buckley Leverett)公式,第二种基于最新的Va公式。 Vt和Va配方均采用CVD-MPFA方法。两种偶联制剂的优点是相反的。在一系列结构化和非结构化四边形和三角形网格上测试了这些方法。测试表明,所发现的方法在包括通道流动问题在内的许多经典情况下均具有可比性。但是,当存在重力时,与总速度公式相反,在Va公式变得局部不稳定的地方可以确定流动状态。与标准的一阶单点上游加权相比,测试案例还显示了高分辨率方法的优势。

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