节点文献

Lattice Boltzmann model for interface capturing of multiphase flows based on Allen–Cahn equation

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 王贺田方宝刘向东

【Author】 He Wang;Fang-Bao Tian;Xiang-Dong Liu;Key Laboratory of Energy Thermal Conversion and Control of Ministry of Education, School of Energy and Environment,Southeast University;School of Engineering and Information Technology, University of New South Wales;College of Electrical, Energy and Power Engineering, Yangzhou University;

【通讯作者】 刘向东;

【机构】 Key Laboratory of Energy Thermal Conversion and Control of Ministry of Education, School of Energy and Environment,Southeast UniversitySchool of Engineering and Information Technology, University of New South WalesCollege of Electrical, Energy and Power Engineering, Yangzhou University

【摘要】 A phase-field-based lattice Boltzmann model is proposed for the interface capturing of multi-phase flows based on the conservative Allen–Cahn equation(ACE). By adopting the improved form of a relaxation matrix and an equilibrium distribution function, the time derivative ?t(φ ) induced by recovering the diffusion term in ACE is eliminated. The conducted Chapman–Enskog analysis demonstrates that the correct conservative ACE is recovered. Four benchmark cases including Zalesak’s disk rotation, vortex droplet, droplet impact on thin film, and Rayleigh–Taylor instability are investigated to validate the proposed model. The numerical results indicate that the proposed model can accurately describe the complex interface deformation.

【Abstract】 A phase-field-based lattice Boltzmann model is proposed for the interface capturing of multi-phase flows based on the conservative Allen–Cahn equation(ACE). By adopting the improved form of a relaxation matrix and an equilibrium distribution function, the time derivative ?t(φ ) induced by recovering the diffusion term in ACE is eliminated. The conducted Chapman–Enskog analysis demonstrates that the correct conservative ACE is recovered. Four benchmark cases including Zalesak’s disk rotation, vortex droplet, droplet impact on thin film, and Rayleigh–Taylor instability are investigated to validate the proposed model. The numerical results indicate that the proposed model can accurately describe the complex interface deformation.

【基金】 supported by the National Key Research and Development Program of China (Grant No. 2019YFB1504301);the Australian Research Council (Grant No. DE160101098)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2022年02期
  • 【分类号】O359
  • 【下载频次】14
节点文献中: 

本文链接的文献网络图示:

本文的引文网络