Numerical simulation of a flow with a magnetic field in an induction furnace of various materials

被引:0
|
作者
Im, Kichang [1 ]
Bae, Myung-Whan [2 ]
机构
[1] School of Mechanical and Aerospace Engineering, Gyeongsang National University, Jinju, Gyeongnam 660-701, Korea, Republic of
[2] Research Center for Aircraft Parts Technology, School of Mechanical and Aerospace Engineering, Gyeongsang National University, Jinju, Gyeongnam 660-701, Korea, Republic of
来源
Journal of Applied Physics | 2008年 / 103卷 / 07期
关键词
The material effects of an induction furnace on a flow and magnetic field are numerically investigated by two parameters; the Reynolds and magnetic Prandtl numbers. These parameters are obtained from the nondimensional governing equations containing the motion effects in Maxwell's equations. Under the assumption of an axisymmetric field; vorticity-stream function formulation is used in conjunction with Maxwell's equations in a boundary-fitted coordinate system. No slip on the wall and no shear stress tensor on the free surface are used as the boundary conditions of a velocity field; and the boundary conditions of a magnetic field are obtained considering the insulated interface and the magnetic field induced by external coils. Presented are streamlines; magnetic streamlines; and the variation of the axial velocity component with Reynolds and magnetic Prandtl numbers. It is found that the flow field varies remarkably with the Reynolds number but slightly with the magnetic Prandtl number except one of the high viscous liquid. © 2008 American Institute of Physics;
D O I
暂无
中图分类号
学科分类号
摘要
Journal article (JA)
引用
收藏
相关论文
共 50 条
  • [31] Numerical simulation of level magnetic field
    Huang, JT
    Wang, EG
    He, JC
    JOURNAL OF IRON AND STEEL RESEARCH INTERNATIONAL, 2003, 10 (02) : 17 - 20
  • [32] Hydraulic and numerical simulation of flow field characteristics in induction heating continuous casting tundish
    Zhang, Yazhu
    Wang, Yi
    Huang, Jun
    Wang, Shuhao
    Zhou, Shikai
    Yi, Bing
    Wang, Baofeng
    IRONMAKING & STEELMAKING, 2024, 51 (03) : 236 - 248
  • [33] LONG-TERM COMPUTATIONS OF TURBULENT FLOW AND TEMPERATURE FIELD IN THE INDUCTION CHANNEL FURNACE WITH VARIOUS CHANNEL DESIGN
    Baake, E.
    Jakovics, A.
    Pavlovs, S.
    Kirpo, M.
    MAGNETOHYDRODYNAMICS, 2010, 46 (04): : 461 - 474
  • [34] Direct numerical simulation of turbulent liquid metal flow entering a magnetic field
    Albets-Chico, X.
    Grigoriadis, D. G. E.
    Votyakov, E. V.
    Kassinos, S.
    FUSION ENGINEERING AND DESIGN, 2013, 88 (12) : 3108 - 3124
  • [35] Numerical simulation of flow driven by a rotating magnetic field in a rotating cylindrical vessel
    Grants, I
    Gelfgat, YM
    PROGRESS IN FLUID FLOW RESEARCH: TURBULENCE AND APPLIED MHD, 1998, 182 : 637 - 648
  • [36] Numerical simulation of the flow field in a bioreactor
    Esterl, S
    Guo, X
    Delgado, A
    WATER SCIENCE AND TECHNOLOGY, 2000, 41 (4-5) : 207 - 210
  • [37] Direct numerical simulation of unstable stratified turbulent flow under a magnetic field
    Satake, Shin-ichi
    Chikamasa, Hidenori
    Kunugi, Tomoaki
    Takase, Kazuyuki
    FUSION ENGINEERING AND DESIGN, 2010, 85 (7-9) : 1326 - 1330
  • [38] Numerical Simulation for flow field in hydrocyclone
    Zhang Fu-Iun
    Deng Song-sheng
    Hua Wei-xing
    ADVANCED MATERIALS AND STRUCTURES, PTS 1 AND 2, 2011, 335-336 : 683 - +
  • [39] Numerical Simulation of Marangoni Flow in Czochralski Crystal Growth Under Magnetic Field
    Cen, X. R.
    Zhan, J. M.
    RECENT PROGRESSES IN FLUID DYNAMICS RESEARCH - PROCEEDINGS OF THE SIXTH INTERNATIONAL CONFERENCE ON FLUID MECHANICS, 2011, 1376
  • [40] Numerical simulation of turbulent flow in FlowCube platform under a strong magnetic field
    Wang, Zhao-Bo
    Chen, Long
    Ni, Ming-Jiu
    ACTA MECHANICA SINICA, 2023, 39 (11)