Numerical simulation of bubble rising in porous media using lattice Boltzmann method

被引:1
|
作者
Lou, Qin [1 ]
Yan, Yu [1 ]
Xu, Hongtao [1 ]
机构
[1] Univ Shanghai Sci & Technol, Sch Energy & Power Engn, Shanghai 200093, Peoples R China
基金
中国国家自然科学基金;
关键词
PARTICULATE SUSPENSIONS; MODEL; DYNAMICS; EQUATION; FLOWS; FIELD;
D O I
10.1063/5.0127791
中图分类号
O59 [应用物理学];
学科分类号
摘要
Rising bubble systems in porous media exist in a variety of industrial processes. However, the flow characteristics of the issue are not well understood. In this work, the rising of bubble/bubbles through two types of porous structures, namely, in-line structured pore and staggered structured pore, are studied using a large density ratio lattice Boltzmann model. The effects of Eotvos number, pore shape, viscosity ratio, initial bubble number, and arrangement manner of the initial bubbles on the bubble deformation, bubble rising velocity, residual bubble mass, bubble perimeter, and the number of bubble breakups are investigated. It is found that as the Eotvos number increases, the bubbles are more easily broken during the process of passing through the porous media, the shapes of the sub-bubbles deviate from the original ones more and more, the bubble perimeter increases, and the difference between the bubble dynamics obtained by the in-line and staggered porous media decreases. Compared to the results of circular and rectangular pores, the bubble rising through the diamondoid pore has a more considerable deformation, which causes a slower rising speed. Furthermore, in the case that two bubbles are originally placed under the porous medium, the bubble deformation is greater and the bubble fracture times increase if the initial bubbles are aligned vertically. The findings of this work can contribute to the understanding of gas-liquid two-phase flow in porous media. Published under an exclusive license by AIP Publishing.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] Numerical Simulation of Drying of a Deformable Anisotropic Porous Medium Using the Lattice Boltzmann Method
    El Abrach, H.
    Dhahri, H.
    Mhimid, A.
    DRYING TECHNOLOGY, 2013, 31 (12) : 1400 - 1414
  • [22] Bubble Dynamics and Enhancement of Pool Boiling in Presence of an Idealized Porous Medium: A Numerical Study Using Lattice Boltzmann Method
    Mondal, Kaushik
    Bhattacharya, Anandaroop
    JOURNAL OF THERMAL SCIENCE AND ENGINEERING APPLICATIONS, 2022, 14 (08)
  • [23] Simulation of Bubble Growing with Lattice Boltzmann Method
    Chen, Sixu
    Li, Longjian
    Hu, Anjie
    11TH INTERNATIONAL CONFERENCE OF NUMERICAL ANALYSIS AND APPLIED MATHEMATICS 2013, PTS 1 AND 2 (ICNAAM 2013), 2013, 1558 : 2241 - 2244
  • [24] Numerical Study on the Tortuosity of Porous Media via Lattice Boltzmann Method
    Lu, Jianhua
    Guo, Zhaoli
    Chai, Zhenhua
    Shi, Baochang
    COMMUNICATIONS IN COMPUTATIONAL PHYSICS, 2009, 6 (02) : 354 - 366
  • [25] Lattice Boltzmann Method for Reacting Flows in Porous Media
    Kang, Qinjun
    Lichtner, Peter C.
    Janecky, David R.
    ADVANCES IN APPLIED MATHEMATICS AND MECHANICS, 2010, 2 (05) : 545 - 563
  • [26] Numerical study on the dynamic behavior of multiple rising bubbles using the lattice Boltzmann method
    Jeong, Namgyun
    JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2019, 33 (11) : 5251 - 5260
  • [27] Simulation of gas flow in micro-porous media with the regularized lattice Boltzmann method
    Wang, Junjian
    Kang, Qinjun
    Wang, Yuzhu
    Pawar, Rajesh
    Rahman, Sheik S.
    FUEL, 2017, 205 : 232 - 246
  • [28] Simulation of microscale gas flow in heterogeneous porous media based on the lattice Boltzmann method
    Zhao, Jianlin
    Yao, Jun
    Li, Aifen
    Zhang, Min
    Zhang, Lei
    Yang, Yongfei
    Sun, Hai
    JOURNAL OF APPLIED PHYSICS, 2016, 120 (08)
  • [29] Hydrodynamic Investigation of Multiple Rising Bubbles Using Lattice Boltzmann Method
    Ghasemi, Mohsen
    Ansari, Mohammad Reza
    Rahimian, Mohammad Hasan
    JOURNAL OF COMPUTATIONAL APPLIED MECHANICS, 2019, 50 (01): : 14 - 26
  • [30] Parallel lattice Boltzmann simulation of bubble rising and coalescence in viscous flows
    Shi, Dongyan
    Wang, Zhikai
    INTERNATIONAL JOURNAL OF MODERN PHYSICS B, 2015, 29 (21):