An Exact Numerical Method for Tracking Bubble Coalescence

被引:5
|
作者
Zhang, Yifu [1 ]
Li, Weizhong [1 ]
Quan, Shenglin [1 ]
机构
[1] Dalian Univ Technol, Sch Energy & Power Engn, Dalian 116024, Peoples R China
关键词
GAS BUBBLE; VISCOUS-LIQUID; MASS-TRANSFER; INVISCID LIQUID; REYNOLDS-NUMBER; SURFACE-TENSION; INITIAL MOTION; SINGLE BUBBLES; FLOWS; VARIABLES;
D O I
10.1080/01457631003639000
中图分类号
O414.1 [热力学];
学科分类号
摘要
In this article, a numerical method based on a combination of the level-set approach and the SIMPLE procedure in the finite-volume framework has been developed to simulate two-dimensional laminar incompressible two-phase flows. A level-set function is used for tracking the gas-liquid interface, and a TVD scheme of second-order upwind coupled with flux limiter is proposed for solving the level-set equation to control the instability caused by nonlinear convection. A modification of Godunov's method of a third-order total variation diminishing (TVD)-Runge-Kutta explicit time-stepping procedure and a fifth-order essentially nonoscillatory (ENO) approximation are presented to re-initialize the level-set function to an exact signed distance function all the time. The governing equations are discretized on the collocated grids in a body-fitted coordinate, and the QUICK scheme with third-order accuracy is used for discretizing the convection terms. A dynamic behavior of a single rising bubble and two bubbles' coalescence in a vertical container is simulated by using this developed code.
引用
收藏
页码:998 / 1006
页数:9
相关论文
共 50 条
  • [1] Numerical modelling of bubble coalescence and droplet separation
    Yan, Y. Y.
    Zu, Y. Q.
    COMPUTATIONAL METHODS IN MULTIPHASE FLOW IV, 2007, 56 : 227 - +
  • [2] NUMERICAL SIMULATION OF SUBCOOLED FLOW BOILING USING A BUBBLE TRACKING METHOD
    Okawa, Tomio
    Miyano, Naoki
    Kaiho, Kazuhiro
    Enoki, Koji
    PROCEEDINGS OF THE 24TH INTERNATIONAL CONFERENCE ON NUCLEAR ENGINEERING, 2016, VOL 3, 2016,
  • [3] Numerical Study of Bubble Rising and Coalescence Characteristics under Flow Pulsation Based on Particle Method
    Chen, Ronghua
    Zhang, Minghao
    Guo, Kailun
    Zhao, Dawei
    Tian, Wenxi
    Su, Guanghui
    Qiu, Suizheng
    SCIENCE AND TECHNOLOGY OF NUCLEAR INSTALLATIONS, 2019, 2019
  • [4] Numerical simulation of bubble flows using interface tracking and bubble tracking methods
    Tomiyama, A
    Takagi, S
    Matsumoto, Y
    MOVING BOUNDARIES V: COMPUTATIONAL MODELLING OF FREE AND MOVING BOUNDARY PROBLEMS, 1999, 1 : 191 - 206
  • [5] Numerical study of co-axial bubble coalescence characteristics
    Islam, Md. Tariqul
    Ganesan, P.
    Sahu, J. N.
    Hamad, F. A.
    ASIA-PACIFIC JOURNAL OF CHEMICAL ENGINEERING, 2015, 10 (05) : 670 - 680
  • [6] Direct numerical simulation of bubble collision, bounce and coalescence in bubble-induced turbulence
    Jin, Y.
    Weiland, C.
    Hoffmann, M.
    Schlueter, M.
    CHEMICAL ENGINEERING SCIENCE, 2024, 284
  • [7] Vortex shedding behind a rising bubble and two-bubble coalescence: A numerical approach
    Smolianski, A
    Haario, H
    Luukka, P
    APPLIED MATHEMATICAL MODELLING, 2005, 29 (07) : 615 - 632
  • [8] Numerical investigation on coalescence of bubble pairs rising in a stagnant liquid
    Chen, R. H.
    Tian, W. X.
    Su, G. H.
    Qiu, S. Z.
    Ishiwatari, Yuki
    Oka, Yoshiaki
    CHEMICAL ENGINEERING SCIENCE, 2011, 66 (21) : 5055 - 5063
  • [9] Direct numerical simulation of bubble swarms with a parallel front-tracking method
    Göz, MF
    Bunner, B
    Sommerfeld, M
    Tryggvason, G
    HIGH PERFORMANCE SCIENTIFIC AND ENGINEERING COMPUTING, 2002, 21 : 97 - 106
  • [10] Visualisation of bubble coalescence in a coalescence cell, a stirred tank and a bubble column
    Tse, K
    Martin, T
    McFarlane, CM
    Nienow, AW
    CHEMICAL ENGINEERING SCIENCE, 1998, 53 (23) : 4031 - 4036