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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Validation of the S-CLSVOF method with the density-scaled balanced continuum surface force model in multiphase systems coupled with thermocapillary flows
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Validation of the S-CLSVOF method with the density-scaled balanced continuum surface force model in multiphase systems coupled with thermocapillary flows

机译:S-CLSVOF方法在密度相平衡的连续介质表面力模型与热毛细管流耦合的多相系统中的验证

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摘要

Three numerical methods, namely, volume of fluid (VOF), simple coupled volume of fluid with level set (S-CLSVOF), and S-CLSVOF with the density-scaled balanced continuum surface force (CSF) model, have been incorporated into OpenFOAM source code and were validated for their accuracy for three cases: (i) an isothermal static case, (ii) isothermal dynamic cases, and (iii) non-isothermal dynamic cases with thermocapillary flow including dynamic interface deformation. Results have shown that the S-CLSVOF method gives accurate results in the test cases with mild computation conditions, and the S-CLSVOF technique with the density-scaled balanced CSF model leads to accurate results in the cases of large interface deformations and large density and viscosity ratios. These show that these high accuracy methods would be appropriate to obtain accurate predictions in multiphase flow systems with thermocapillary flows. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:OpenFOAM合并了三种数值方法,即流体体积(VOF),带液位的简单耦合体积(S-CLSVOF)和具有密度标度的平衡连续表面力(CSF)模型的S-CLSVOF源代码,并在以下三种情况下验证了其准确性:(i)等温静态情况,(ii)等温动态情况,以及(iii)具有热毛细流动(包括动态界面变形)的非等温动态情况。结果表明,在计算条件温和的情况下,S-CLSVOF方法可提供准确的结果,而在界面变形较大,密度较大且密度较大的情况下,采用密度缩放的平衡CSF模型的S-CLSVOF技术可获得准确的结果。粘度比。这些表明,这些高精度方法将适合于在具有热毛细管流的多相流系统中获得准确的预测。版权所有(c)2016 John Wiley&Sons,Ltd.

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