Numerical simulation of ski-jump jet motion using lattice Boltzmann method

被引:2
|
作者
Zhang Hua [1 ]
Zhang XiaoDong [2 ]
机构
[1] N China Elect Power Univ, Sch Renewable Energy, Beijing 102206, Peoples R China
[2] N China Elect Power Univ, Sch Energy Power & Mech Engn, Beijing 102206, Peoples R China
来源
基金
中国国家自然科学基金;
关键词
ski-jump jet; droplet; lattice Boltzmann method; interface; numerical simulation; FLOWS; MODEL;
D O I
10.1007/s11431-011-4600-0
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Based on the lattice Boltzmann method, a lattice Boltzmann (LB) model of the ski-jump jet two-phase flow is developed first and the corresponding boundary conditions are studied. A simple case study of a droplet horizontal movement calculation is carried out to test and verify the model, where level set method is used to track and reconstruct the moving droplet free surface. Then, we numerically simulate a two dimensional flow field of the ski-jump jet with the LB model, derive the moving surface and velocity vector field of the jet flow. The simulation results are very consistent with the physical mechanisms. The effectiveness and reliability of the model are demonstrated by the numerical examples.
引用
收藏
页码:72 / 75
页数:4
相关论文
共 50 条
  • [21] Modeling and simulation of plasma jet by lattice Boltzmann method
    Zhang, Haiou
    Hu, Shengde
    Wang, Guilan
    Zhu, Jieying
    APPLIED MATHEMATICAL MODELLING, 2007, 31 (06) : 1124 - 1132
  • [22] Two dimensional Lattice Boltzmann numerical simulation of a buoyant jet
    Montessori, A.
    Prestininzi, P.
    La Rocca, M.
    Malcangio, D.
    Mossa, M.
    SUSTAINABLE HYDRAULICS IN THE ERA OF GLOBAL CHANGE: ADVANCES IN WATER ENGINEERING AND RESEARCH, 2016, : 996 - 1002
  • [23] Numerical simulation of particle motion in an ultrasound field using the lattice Boltzmann model
    Cosgrove, JA
    Buick, JV
    Campbell, DV
    Greated, CA
    ULTRASONICS, 2004, 43 (01) : 21 - 25
  • [24] Large eddy simulation of a thermal impinging jet using the lattice Boltzmann method
    Nguyen, M.
    Boussuge, J. F.
    Sagaut, P.
    Larroya-Huguet, J. C.
    PHYSICS OF FLUIDS, 2022, 34 (05)
  • [25] Numerical simulation of dissolved air flotation using a lattice Boltzmann method
    Ghorbanpour-Arani, Amirabbas
    Rahimian, Mohammad-Hassan
    Haghani-Hassan-Abadi, Reza
    PHYSICAL REVIEW E, 2020, 101 (02)
  • [26] NUMERICAL SIMULATION OF THERMOMAGNETIC CONVECTION IN AN ENCLOSURE USING THE LATTICE BOLTZMANN METHOD
    Hadavand, Mahshid
    Nabovati, Aydin
    Sousa, Antonio C. M.
    PROCEEDINGS OF THE ASME FLUIDS ENGINEERING DIVISION SUMMER CONFERENCE - 2010 - VOL 1, PTS A-C, 2010, : 1693 - 1701
  • [27] NUMERICAL SIMULATION OF DRYING A POROUS MATERIAL USING THE LATTICE BOLTZMANN METHOD
    Shokouhmand, Hossein
    Hosseini, Salah
    Abdollahi, Vahid
    JOURNAL OF POROUS MEDIA, 2012, 15 (04) : 303 - 315
  • [28] Numerical Simulation of Flow Around Obstacles Using Lattice Boltzmann Method
    Benamour, M.
    Liberge, E.
    Beghein, C.
    Hamdouni, A.
    PROCEEDINGS OF THE INTERNATIONAL CONFERENCE OF NUMERICAL ANALYSIS AND APPLIED MATHEMATICS 2014 (ICNAAM-2014), 2015, 1648
  • [29] Numerical simulation of droplet formation in a microchannel using the lattice Boltzmann method
    Kim, Lae Sung
    Kim, Hyo Geun
    Jeong, Hae Kwon
    Ha, Man Yeong
    Kim, Kyung Chun
    PROCEEDINGS OF THE 3RD ASIAN CONFERENCE ON REFRIGERATION AND AIR-CONDITIONING VOLS I AND II, 2006, : 529 - +
  • [30] Numerical simulation of bubble interactions using an adaptive lattice Boltzmann method
    Yu, Zhao
    Yang, Hui
    Fan, Liang-Shih
    CHEMICAL ENGINEERING SCIENCE, 2011, 66 (14) : 3441 - 3451