A lattice Boltzmann model for the interface tracking of immiscible ternary fluids based on the conservative Allen-Cahn equation

被引:3
作者
Zhou, C. [1 ]
Zu, Y. Q. [1 ]
机构
[1] Fudan Univ, Dept Aeronaut & Astronaut, Shanghai 200433, Peoples R China
基金
上海市自然科学基金; 中国国家自然科学基金;
关键词
Lattice Boltzmann model; Interface tracking; Ternary fluids; The conservative Allen-Cahn equation; 3-PHASE FLOW; MULTIPHASE FLOW; LIQUID-GAS; SIMULATION; DENSITY; VISCOSITY; DYNAMICS;
D O I
10.1016/j.compfluid.2023.106093
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
A lattice Boltzmann (LB) model for the interface tracking of immiscible ternary fluids is proposed based on the conservative Allen-Cahn (A-C) equation. A nonlocal equilibrium distribution function source term is adopted in the LB equation to eliminate the unwanted numerical items. With the new LB equation and the carefully designed equilibrium distribution function, Chapman-Enskog analysis shows that the present model can correctly recover the conservative A-C equation with second-order accuracy. A series of benchmark cases have been used to validate the accuracy and stability of the present model, including the classical diagonal translation of two concentric circular interfaces, the rigid-body rotation of Zalesak's disk, and the periodic shear deformation of two tangent circular interfaces. By coupling the dynamic LB model for Navier-Stokes equations, the stationary droplets, the spreading of a liquid lens, the spinodal decomposition, and the Raleigh-Taylor instability have also been simulated in the framework of ternary fluids. Utilizing the geometric interpolation method, the wettability effect of the horizontal boundary is considered and numerical tests with different wall contact angles have been performed to verify the applicability of the present model. All the numerical tests show that the present model can capture the interfaces among the immiscible ternary fluids accurately. Furthermore, using fewer discrete velocity directions, the present model shows higher numerical accuracy and stability compared with other existing numerical models. Therefore, it is promising to improve computational efficiency.
引用
收藏
页数:18
相关论文
共 50 条
[41]   Interface-capturing lattice Boltzmann equation model for two-phase flows [J].
Lou, Qin ;
Guo, Zhaoli .
PHYSICAL REVIEW E, 2015, 91 (01)
[42]   A generalized conservative phase-field simplified lattice Boltzmann method for miscible and immiscible ternary flows with large density ratio [J].
Zhang, Shi-Ting ;
Zhou, Jin-Xiang ;
Xiao, Hong-Wei ;
Niu, Xiao-Dong ;
Wei, Huaxian ;
Khan, Adnan ;
Li, De-Cai ;
Yamaguchi, Hiroshi .
INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2022, 149
[43]   A New Conservative Allen-Cahn Type Ohta-Kawaski Phase-Field Model for Diblock Copolymers and Its Numerical Approximations [J].
Geng, Shuang ;
Li, Tongmao ;
Ye, Qiongwei ;
Yang, Xiaofeng .
ADVANCES IN APPLIED MATHEMATICS AND MECHANICS, 2022, 14 (01) :101-124
[44]   Numerical study of incompressible binary fluids on 3D curved surfaces based on the conservative Allen-Cahn-Navier-Stokes model [J].
Yang, Junxiang ;
Kim, Junseok .
COMPUTERS & FLUIDS, 2021, 228
[45]   Conservative phase-field-based lattice Boltzmann equation for gas-liquid-solid flow [J].
Zheng, Lin ;
Zheng, Song ;
Zhai, Qinglan .
PHYSICAL REVIEW E, 2025, 111 (01)
[46]   A cascaded phase-field lattice Boltzmann model for the simulation of incompressible, immiscible fluids with high density contrast [J].
Gruszczynski, G. ;
Mitchell, T. ;
Leonardi, C. ;
Laniewski-Wollk, L. ;
Barber, T. .
COMPUTERS & MATHEMATICS WITH APPLICATIONS, 2020, 79 (04) :1049-1071
[47]   Improved locality of the phase-field lattice-Boltzmann model for immiscible fluids at high density ratios [J].
Fakhari, Abbas ;
Mitchell, Travis ;
Leonardi, Christopher ;
Bolster, Diogo .
PHYSICAL REVIEW E, 2017, 96 (05)
[48]   Solitary wave of the Korteweg-de Vries equation based on lattice Boltzmann model with three conservation laws [J].
Wang, Huimin .
ADVANCES IN SPACE RESEARCH, 2017, 59 (01) :283-292
[49]   Study of Two Layered Immiscible Fluids Flow in a Channel with Obstacle by Using Lattice Boltzmann RK Color Gradient Model [J].
Channouf, Salaheddine ;
Youssef, Admi ;
Jami, Mohammed ;
Moussaoui, Mohammed Amine .
INTERNATIONAL JOURNAL OF RENEWABLE ENERGY DEVELOPMENT-IJRED, 2023, 12 (01) :22-35
[50]   Reduction-consistent multiple-relaxation-time lattice Boltzmann equation method for wall bounded N immiscible incompressible fluids [J].
Zheng, Lin ;
Zheng, Song ;
Zhai, Qinglan .
COMPUTERS & FLUIDS, 2021, 221