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Curvature estimation from a volume-of-fluid indicator function for the simulation of surface tension and wetting with a free-surface lattice Boltzmann method

机译:从流体体积指标函数进行曲率估计,用自由表面晶格玻尔兹曼法模拟表面张力和润湿

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摘要

The free surface lattice Boltzmann method (FSLBM) is a combination of the hydrodynamic lattice Boltzmann method (LBM) with a volume of fluid (VOF) interface apturing technique for the simulation of incompressible free surface flows. Capillary effects are modeled by extracting the curvature of the interface from the VOF indicator function and imposing a pressure jump at the free boundary. However, obtaining accurate curvature estimates from a VOF description can introduce significant errors. This article reports numerical results for three different surface tension models in standard test cases, and compares the according errors in the velocity field (spurious currents). Furthermore, the FSLBM is shown to be suited to simulate wetting effects at solid boundaries. To this end, a new method is developed to represent wetting boundary conditions in a least squares curvature econstruction technique. The main limitations of the current FSLBM are analyzed and are found to be caused by its simplified advection scheme. Possible improvements are suggested.
机译:自由表面格子Boltzmann方法(FSLBM)是流体动力学格子Boltzmann方法(LBM)与大量流体(VOF)界面贴合技术的组合,用于模拟不可压缩的自由表面流。通过从VOF指示器函数中提取界面的曲率并在自由边界处施加压力跃变来模拟毛细管效应。但是,从VOF描述中获取准确的曲率估计值可能会引入重大错误。本文报告了标准测试案例中三种不同表面张力模型的数值结果,并比较了速度场中的相应误差(寄生电流)。此外,FSLBM被证明适用于模拟固体边界的润湿效果。为此,开发了一种新方法来表示最小二乘曲率构造技术中的润湿边界条件。分析了当前FSLBM的主要局限性,发现其是由其简化的对流方案引起的。建议可能的改进。

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