On hydrodynamic phase field models for binary fluid mixtures

被引:0
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作者
Xiaogang Yang
Yuezheng Gong
Jun Li
Jia Zhao
Qi Wang
机构
[1] Wuhan Institute of Technology,School of Science
[2] Nanjing University of Aeronautics and Astronautics,College of Science
[3] Tianjin Normal University,School of Mathematical Sciences
[4] Utah State University,Department of Mathematics & Statistics
[5] Beijing Computational Science Research Center,Department of Mathematics
[6] University of South Carolina,School of Materials Science and Engineering
[7] Nankai University,undefined
关键词
Hydrodynamic phase field models; Quasi-incompressible models; Incompressible models; Viscous fluid mixtures; Density differences;
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摘要
Two classes of thermodynamically consistent hydrodynamic phase field models have been developed for binary fluid mixtures of incompressible viscous fluids of possibly different densities and viscosities. One is quasi-incompressible, while the other is incompressible. For the same binary fluid mixture of two incompressible viscous fluid components, which one is more appropriate? To answer this question, we conduct a comparative study in this paper. First, we visit their derivation, conservation and energy dissipation properties and show that the quasi-incompressible model conserves both mass and linear momentum, while the incompressible one does not. We then show that the quasi-incompressible model is sensitive to the density deviation of the fluid components, while the incompressible model is not in a linear stability analysis. Second, we conduct a numerical investigation on coarsening or coalescent dynamics of protuberances using the two models. We find that they can predict quite different transient dynamics depending on the initial conditions and the density difference although they predict essentially the same quasi-steady results in some cases. This study thus cast a doubt on the applicability of the incompressible model to describe dynamics of binary mixtures of two incompressible viscous fluids especially when the two fluid components have a large density deviation.
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页码:537 / 560
页数:23
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