Study on the Bubble Growth and Departure with A Lattice Boltzmann Method

被引:0
作者
Guo-qing Chen
Xiao Huang
Shi-ping Wang
You-wei Kang
机构
[1] Harbin Engineering University,College of Shipbuilding Engineering
[2] Northwestern Polytechnical University,School of Marine Science and Technology
[3] CIMC Offshore Co. Ltd,undefined
来源
China Ocean Engineering | 2020年 / 34卷
关键词
lattice Boltzmann method; free energy model; bubble growth and departure; high density ratio;
D O I
暂无
中图分类号
学科分类号
摘要
For the growth and departure of bubbles from an orifice, a free energy lattice Boltzmann model is adopted to deal with this complex multiphase flow phenomenon. A virtual layer is set at the boundary of the flow domain to deal with the no-slip boundary condition. Effects of the viscosity, surface tension, gas inertial force and buoyancy on the characteristics of bubbles when they grow and departure from an orifice in quiescent liquid are studied. The releasing period and departure diameter of the bubble are influenced by the residual gas at the orifice, and the interaction between bubbles is taken into consideration. The relations between the releasing period or departure diameter and the gravity acceleration show fair agreements with previous numerical and theoretical results. And the influence of the gas outflow velocity on bubble formation is discussed as well. For the bubbles growing in cross-flow field, effects of the cross-flow speed and the gas outflow velocity on the bubble formation are discussed, which is related to the application in ship resistance reduction. And optimal choice of the ship speed and gas outflow velocity is studied. Cases in this paper also prove that this high density ratio LBM model has its flexibility and effectiveness on multiphase flow simulations.
引用
收藏
页码:69 / 79
页数:10
相关论文
共 109 条
[1]  
Alizadeh M(2017)Three-dimensional numerical simulation of rising bubbles in the presence of cylindrical obstacles using lattice Boltzmann method Journal of Molecular Liquids 236 151-161
[2]  
Seyyedi SM(1996)The Cahn-Hilliard equation with a concentration dependent mobility: motion by minus the Laplacian of the mean curvature European Journal of Applied Mathematics 7 287-301
[3]  
Taeibi Rahni M(2019)Simulation of three-dimensional bubble formation and interaction using the high-density-ratio lattice Boltzmann method Physics of Fluids 31 027102-2536
[4]  
Ganji DD(2019)Three-dimensional simulation of a rising bubble in the presence of spherical obstacles by the immersed boundary-lattice Boltzmann method Physics of Fluids 31 097104-270
[5]  
Cahn JW(1996)On boundary conditions in lattice Boltzmann methods Physics of Fluids 8 2527-384
[6]  
Elliott CM(2017)Study on coupled dynamics of ship and flooding water based on experimental and SPH methods Physics of Fluids 29 107101-944
[7]  
Novick-Cohen A(2010)Simulation of bubble-bubble interaction using a lattice Boltzmann method Computers & Fluids 39 260-4084
[8]  
Chen GQ(1935)Maximum volume of vapor bubbles Physikalische Zeitschrift 36 379-1879
[9]  
Huang X(2002)Discrete lattice effects on the forcing term in the lattice Boltzmann method Physical Review E 65 046308-127
[10]  
Zhang AM(1997)Lattice boltzmann model for the incompressible Navier-Stokes equation Journal of Statistical Physics 88 927-532