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Modeling of static contact angles with curved boundaries using a multiphase lattice Boltzmann method with variable density and viscosity ratios

机译:使用具有可变密度和粘度比的多相晶格Boltzmann方法对具有弯曲边界的静态接触角进行建模

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摘要

Numerical modeling of multiphase flow generally requires a special procedure at the solid wall in order to be consistent with Young's law for static contact angles. The standard approach in the lattice Boltzmann method, which consists of imposing fictive densities at the solid lattice sites, is shown to be deficient for this task. Indeed, fictive mass transfer along the boundary could happen and potentially spoil the numerical results. In particular, when the contact angle is less than 90 degrees, the deficiencies of the standard model are major. Various videos that demonstrate this behavior are provided (Supporting Information). A new approach is proposed and consists of directly imposing the contact angle at the boundaries in much the same way as Dirichlet boundary conditions are generally imposed. The proposed method is able to retrieve analytical solutions for static contact angles in the case of straight and curved boundaries even when variable density and viscosity ratios between the phases are considered. Although the proposed wetting boundary condition is shown to significantly improve the numerical results for one particular class of lattice Boltzmann model, it is believed that other lattice Boltzmann multiphase schemes could also benefit from the underlying ideas of the proposed method. The proposed algorithm is two-dimensional, and the D2Q9 lattice is used. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:多相流的数值建模通常需要在实体壁上执行特殊的过程,以符合静态接触角的杨氏定律。晶格玻尔兹曼方法中的标准方法(在实心晶格位置施加虚构密度)被证明不足以完成此任务。实际上,可能会发生沿边界的虚拟传质,并可能破坏数值结果。特别地,当接触角小于90度时,标准模型的缺陷很严重。提供了各种视频来证明这种行为(支持信息)。提出了一种新方法,该方法包括以与通常施加Dirichlet边界条件几乎相同的方式直接在边界处施加接触角。所提出的方法即使在考虑了相之间的密度和粘度比可变的情况下,也能够在直线和弯曲边界的情况下检索静态接触角的解析解。尽管表明拟议的润湿边界条件可以显着改善一类特殊的格子Boltzmann模型的数值结果,但可以相信,其他格子Boltzmann多相方案也可以从该方法的基本思想中受益。所提出的算法是二维的,并且使用了D2Q9点阵。版权所有(C)2016 John Wiley&Sons,Ltd.

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