Three-dimensional numerical simulation of bubble rising in viscous liquids: A conservative phase-field lattice-Boltzmann study

被引:44
|
作者
Zhang, Ang [1 ]
Guo, Zhipeng [1 ]
Wang, Qigui [2 ]
Xiong, Shoumei [1 ,3 ]
机构
[1] Tsinghua Univ, Sch Mat Sci & Engn, Beijing 100084, Peoples R China
[2] GM Global Prop Syst, Mat Technol, Pontiac, MI 48340 USA
[3] Tsinghua Univ, Minist Educ, Key Lab Adv Mat Proc Technol, Beijing 100084, Peoples R China
基金
中国国家自然科学基金;
关键词
LAMELLAR EUTECTIC GROWTH; SPHERICAL CAP; CONVECTION; RISE; INTERFACE; REFINEMENT; DYNAMICS; COLLAPSE; ENERGY;
D O I
10.1063/1.5096390
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Simulating bubble rising in viscous liquids is challenging because of the large liquid-to-gas density ratio and complex topological evolution of the gas-liquid interface. In this study, a conservative phase-field model is employed to accurately track the interface during bubble rising, and the lattice Boltzmann model is used to determine the flow field driven by the buoyancy force and the surface tension force. To facilitate large-scale three-dimensional simulations, a parallel-adaptive mesh refinement algorithm is developed to reduce the computing overhead. The simulated bubble shapes under different configurations are compared with the shape chart through experiments [D. Bhaga and M. E. Weber, Bubbles in viscous liquids: shapes, wakes, and velocities, J. Fluid Mech. 105, 61-85 (1981)]. The influence of the numerical parameters (including domain size, surface tension, liquid viscosity, gravity, and density ratio) on the bubble dynamics is investigated, which demonstrates the capability of the current numerical scheme in simulating multiphase flow. Furthermore, complex topology changes including the bubble coalescence, splitting, and interplay with obstacles (i.e., squeeze deformation and bubble splitting) are simulated and compared in different cases, i.e., with different Reynolds, Eotvos, and Morton numbers. The effect of the initial bubble spacing on the coalescence of the two bubbles and the influence of boundary conditions on multiple bubble dynamics are investigated. When the bubbles can be completely blocked by the obstacle is quantified in terms of the obstacle width. Numerical results validate the robustness of the present numerical scheme in simulating multiphase flow.
引用
收藏
页数:19
相关论文
共 50 条
  • [41] Thermal lattice Boltzmann study of three-dimensional bubble growth in quiescent liquid
    Chang, Xiangting
    Huang, Haibo
    Lu, Xi-Yun
    COMPUTERS & FLUIDS, 2017, 159 : 232 - 242
  • [42] Phase-field study of solidification in three-dimensional channels
    Kassner, Klaus
    Guerin, Rahma
    Ducousso, Tristan
    Debierre, Jean-Marc
    PHYSICAL REVIEW E, 2010, 82 (02):
  • [43] Three-dimensional phase-field simulation of intergranular bubble evolution in UO2 during irradiation
    Lan, Xun
    Jiang, Yanbo
    Sun, Dan
    Liu, Wenbo
    Li, Wenjie
    NUCLEAR ENGINEERING AND DESIGN, 2024, 416
  • [44] A lattice-Boltzmann scheme of the Navier-Stokes equation on a three-dimensional cuboid lattice
    Wang, Lian-Ping
    Min, Haoda
    Peng, Cheng
    Geneva, Nicholas
    Guo, Zhaoli
    COMPUTERS & MATHEMATICS WITH APPLICATIONS, 2019, 78 (04) : 1053 - 1075
  • [45] Cross-Permeability of the Semisolid Region in Directional Solidification: A Combined Phase-Field and Lattice-Boltzmann Simulation Approach
    B. Böttger
    C. Haberstroh
    N. Giesselmann
    JOM, 2016, 68 : 27 - 36
  • [46] Cross-Permeability of the Semisolid Region in Directional Solidification: A Combined Phase-Field and Lattice-Boltzmann Simulation Approach
    Boettger, B.
    Haberstroh, C.
    Giesselmann, N.
    JOM, 2016, 68 (01) : 27 - 36
  • [47] A Phase-Field Lattice-Boltzmann Study on Dendritic Growth of Al-Cu Alloy Under Convection
    Zhang, Ang
    Du, Jinglian
    Guo, Zhipeng
    Wang, Qigui
    Xiong, Shoumei
    METALLURGICAL AND MATERIALS TRANSACTIONS B-PROCESS METALLURGY AND MATERIALS PROCESSING SCIENCE, 2018, 49 (06): : 3603 - 3615
  • [48] A Phase-Field Lattice-Boltzmann Study on Dendritic Growth of Al-Cu Alloy Under Convection
    Ang Zhang
    Jinglian Du
    Zhipeng Guo
    Qigui Wang
    Shoumei Xiong
    Metallurgical and Materials Transactions B, 2018, 49 : 3603 - 3615
  • [49] Numerical simulation of three-dimensional dendritic growth for a binary alloy using phase-field method
    Zhu, Changsheng
    Feng, Li
    Wang, Zhiping
    Xiao, Rongzhen
    Jixie Gongcheng Xuebao/Journal of Mechanical Engineering, 2009, 45 (01): : 88 - 93
  • [50] Examining a Conservative Phase-Field Lattice Boltzmann Model for Two-Phase Flows
    Li, Wende
    Sun, Chenghai
    Dressler, Marco
    Otomo, Hiroshi
    Li, Yanbing
    Zhang, Raoyang
    AIAA JOURNAL, 2024,