A numerical study on the turbulence characteristics in an air-water upward bubbly pipe flow

被引:1
|
作者
Lee, Ingu [1 ]
Chang, Jaehee [1 ]
Kim, Kiyoung [1 ]
Choi, Haecheon [1 ,2 ]
机构
[1] Seoul Natl Univ, Dept Mech Engn, Seoul 08826, South Korea
[2] Seoul Natl Univ, Inst Adv Machines & Design, Seoul 08826, South Korea
基金
新加坡国家研究基金会;
关键词
gas/liquid flow; pipe flow; turbulence simulation; VELOCITY FLUCTUATIONS; VERTICAL CHANNEL; HEAT-TRANSFER; SIMULATION; WAKE; MOMENTUM; MODEL; LIFT; COALESCENCE; DISPERSION;
D O I
10.1017/jfm.2024.652
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
A high-resolution numerical simulation of an air-water turbulent upward bubbly flow in a pipe is performed to investigate the turbulence characteristics and bubble interaction with the wall. We consider three bubble equivalent diameters and three total bubble volume fractions. The bulk and bubble Reynolds numbers are Re-bulk = u(bulk)D/nu(w) = 5300 and Re-bub = (< ubub > - u(bulk))deq/nu(w) = 533-1000, respectively, where ubulk is the water bulk velocity, < ubub > is the overall bubble mean velocity, D is the pipe diameter and nu(w) is the water kinematic viscosity. The mean water velocity near the wall significantly increases due to bubble interaction with the wall, and the root-mean-square water velocity fluctuations are proportional to (psi) over bar (r)(0.4), where (psi) over bar (r) is the mean bubble volume fraction. For the cases considered, the bubble-induced turbulence suppresses the shear-induced turbulence and becomes the dominant flow characteristic at all radial locations including near the wall. Rising bubbles near the wall mostly bounce against the wall rather than slide along the wall or hang around the wall without collision. Low-speed streaks observed in the near-wall region in the absence of bubbles nearly disappear due to the bouncing bubbles. These bouncing bubbles generate counter-rotating vortices in their wake, and increase the skin friction by sweeping high-speed water towards the wall. We also suggest an algebraic Reynolds-averaged Navier-Stokes model considering the interaction between shear-induced and bubble-induced turbulence. This model provides accurate predictions for a wide range of liquid bulk Reynolds numbers.
引用
收藏
页数:36
相关论文
共 50 条
  • [1] Upward air-water bubbly flow characteristics in a vertical square duct
    Sun, Haomin
    Kunugi, Tomoaki
    Shen, Xiuzhong
    Wu, Dazhuan
    Nakamura, Hideo
    JOURNAL OF NUCLEAR SCIENCE AND TECHNOLOGY, 2014, 51 (03) : 267 - 281
  • [2] The effect of surfactants on upward air-water pipe flow at various inclinations
    van Nimwegen, A. T.
    Portela, L. M.
    Henkes, R. A. W. M.
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2016, 78 : 132 - 147
  • [3] NUMERICAL INVESTIGATIONS OF A SWIRLING TWO-PHASE AIR-WATER UPWARD FLOW IN STRAIGHT AND CONVERGENT VERTICAL PIPE
    Manimaran, R.
    Kumar, M. Senthil
    Karunamurthy, K.
    Hossain, Mamdud
    INTERNATIONAL JOURNAL OF FLUID MECHANICS RESEARCH, 2023, 50 (02) : 31 - 57
  • [4] Experimental study of interfacial characteristics of vertical upward air-water two-phase flow in 25.4 mm ID round pipe
    Dang, Zhuoran
    Wang, Guanyi
    Ju, Peng
    Yang, Xiaohong
    Bean, Robert
    Ishii, Mamoru
    Bajorek, Stephen
    Bernard, Matthew
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2017, 108 : 1825 - 1838
  • [5] Prediction of bubbly flow and flow regime development in a horizontal air-water pipe flow with a morphology-adaptive multifluid CFD model
    Colombo, Marco
    Fairweather, Michael
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2025, 184
  • [6] Buoyancy effects in steeply inclined air-water bubbly shear flow in a rectangular channel
    Sanaullah, K.
    Arshad, M.
    Khan, A.
    Chughtai, I. R.
    THERMOPHYSICS AND AEROMECHANICS, 2015, 22 (04) : 463 - 473
  • [7] Pressure wave propagation in air-water bubbly and slug flow
    Huang, F
    Takahashi, M
    Gu, LJ
    PROGRESS IN NUCLEAR ENERGY, 2005, 47 (1-4) : 648 - 655
  • [8] Heat transfer and pressure drop experimental correlations for air-water bubbly flow
    Cui, Wenzhi
    Li, Longjian
    Chen, Qinghua
    Liao, Quan
    Jen, Tien-Chien
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2006, 49 (23-24) : 4417 - 4423
  • [9] Heat transfer and pressure drop experimental correlations for air-water bubbly flow
    Cui, Wenzhi
    Li, Longjian
    Chen, Qinghua
    Liao, Quan
    Jeri, Tien-Chien
    HT2005: Proceedings of the ASME Summer Heat Transfer Conference 2005, Vol 2, 2005, : 233 - 238
  • [10] Upward flow of air-oil-water mixture in vertical pipe
    Pietrzak, Marcin
    Placzek, Malgorzata
    Witczak, Stanislaw
    EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2017, 81 : 175 - 186