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A SHARP SURFACE TENSION MODELING METHOD FOR CAPILLARITY- DOMINANT TWO-PHASE INCOMPRESSIBLE FLOWS

机译:容性占优两相不可压缩流动的夏普表面张力建模方法

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A surface tension implementation algorithm for two-phase incompressible interfacial flows is presented in this study. The surface tension effect is treated as a jump condition at the interface and incorporated into the Navier-Stokes equation via a capillary pressure gradient. The interface is tracked by a coupled level set and volume-of-fluid (CLSVOF) method based on the finite-volume formulation on a fixed Eulerian grid. It has been shown in a stationary benchmark test the spurious currents are greatly reduced and the sharp pressure jump across the interface is well preserved. Numerical instabilities caused by the sharp treatment on a fixed grid are avoided. Several dynamic tests are performed to further validate the accuracy and versatility of the present method, the results of which are in good agreement with data reported in the literature.
机译:本研究提出了一种用于两相不可压缩界面流量的表面张力实现算法。表面张力效应被视为界面处的跳转条件,并通过毛细管压力梯度将其掺入Navier-Stokes方程中。通过基于固定欧拉网格上的有限体积配方的耦合电平集和流体体积(CLSVOF)方法跟踪该界面。它已在静止基准测试中显示,杂散电流大大降低,横跨界面的急剧跳跃保存完好无损。避免了由固定网格上的急剧处理引起的数值不稳定性。进行几种动态测试以进一步验证本方法的准确性和多功能性,其结果与文献中报道的数据吻合良好。

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