Modeling of Heat Fluxes in Edge Plasma of Small Size Divertor Tokamak

被引:0
|
作者
A. H. Bekheit
机构
[1] Nuclear Research Centre,Plasma and Nuclear Fusion Department
[2] Atomic Energy Authority,undefined
来源
Journal of Fusion Energy | 2016年 / 35卷
关键词
Heat flux; ITB; B2SOLPS5.02D;
D O I
暂无
中图分类号
学科分类号
摘要
The heat flows out from the tokamak core region are collected on the divertor plates and external wall. Control of heat flux exhaust in the SOL and divertor plates regions is one of the important issues in tokamak physics. There are important phenomena affecting heat flows were simulated. The simulation is based on the B2SOLPS5.0 2D multifluid code. It is demonstrated that, the following results: (1) The simulation shows that, the operation of small size divertor tokamak, the divertor plate with/without impurities influence on profiles of electron, ion temperatures, and heat loads significantly. (2) Under normal direction of parallel (toroidal) magnetic field and different values of edge plasma density, strong “SOL” heat flow exists directed towards the LFS (outer) plate. (3) The simulation results show that, the increasing of the plasma density strong influence on the ion and electron poloidal heat fluxes profile significantly. The ion and electron polodial heat flux increase by factor “~8” and “2.4” times. (4) The simulation results show that the in–out asymmetry of heat fluxes was reversed when switching on/off E × B drifts in the edge plasma of this tokamak. (5) The simulation results show correlation between the in–out asymmetry divertor heat fluxes and E × B drift velocity. (6) The observed heat loads asymmetry between HFS and LFS plates can be explained with the radial electric field in SOL. (7) Also the simulation results performed result in, the in–out asymmetry strong influence on the characteristic length of ion poloidal heat flux.
引用
收藏
页码:769 / 775
页数:6
相关论文
共 50 条
  • [41] KINETIC MODELING OF PLASMA NEAR THE NEUTRALIZER PLATE IN A TOKAMAK DIVERTOR
    ABOUASSALEH, Z
    MARCHAND, R
    MATTE, JP
    JOHNSTON, TW
    PARBHAKAR, KJ
    CONTRIBUTIONS TO PLASMA PHYSICS, 1990, 30 (01) : 37 - 43
  • [42] Divertor heat fluxes and profiles during mitigated and unmitigated edge localised modes (ELMs) on the Mega Amp Spherical Tokamak (MAST)
    Thornton, A. J.
    Kirk, A.
    Chapman, I. T.
    Harrison, J. R.
    JOURNAL OF NUCLEAR MATERIALS, 2013, 438 : S199 - S202
  • [43] Modeling plasma contact with the main vessel walls of a divertor tokamak
    Stangeby, PC
    PHYSICS OF PLASMAS, 2002, 9 (08) : 3489 - 3507
  • [44] Kinetic effects in edge plasma: kinetic modeling for edge plasma and detached divertor
    Takizuka, T.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2017, 59 (03)
  • [45] Mechanisms governing radial heat fluxes in tokamak plasma
    Razumova, K. A.
    Timchenko, N. N.
    Dnestrovskij, A. Yu.
    Lysenko, S. E.
    PLASMA PHYSICS REPORTS, 2016, 42 (09) : 809 - 817
  • [46] Mechanisms governing radial heat fluxes in tokamak plasma
    K. A. Razumova
    N. N. Timchenko
    A. Yu. Dnestrovskij
    S. E. Lysenko
    Plasma Physics Reports, 2016, 42 : 809 - 817
  • [47] Modeling and meshing for tokamak edge plasma simulations
    Riaz, Usman
    Seol, E. Seegyoung
    Hager, Robert
    Shephard, Mark S.
    COMPUTER PHYSICS COMMUNICATIONS, 2024, 295
  • [48] Continuum kinetic modeling of the tokamak plasma edge
    Dorf, M. A.
    Dorr, M. R.
    Hittinger, J. A.
    Cohen, R. H.
    Rognlien, T. D.
    PHYSICS OF PLASMAS, 2016, 23 (05)
  • [49] Penalization modeling of a limiter in the Tokamak edge plasma
    Isoardi, L.
    Chiavassa, G.
    Ciraolo, G.
    Haldenwang, P.
    Serre, E.
    Ghendrih, Ph.
    Sarazin, Y.
    Schwander, F.
    Tamain, P.
    JOURNAL OF COMPUTATIONAL PHYSICS, 2010, 229 (06) : 2220 - 2235
  • [50] BIFURCATIONS IN AN ADVANCED 2-CHAMBER MODEL FOR THE EDGE PLASMA IN A DIVERTOR TOKAMAK
    PUNJABI, A
    SOE, M
    JOURNAL OF PLASMA PHYSICS, 1994, 52 : 457 - 463