NAME

孙继忠

Paper Publications

SOLPS modeling of lithium transport in the scrape-off layer during real-time lithium injection on EAST
  • Hits:
  • Indexed by:

    期刊论文

  • First Author:

    Sang, Chaofeng

  • Correspondence Author:

    Sang, CF (reprint author), Dalian Univ Technol, Sch Phys & Optoelect Technol, Dalian 116024, Peoples R China.

  • Co-author:

    Du, Hailong,Zuo, Guizhong,Bonnin, Xavier,Sun, Jizhong,Wang, Liang,Wang, Dezhen

  • Date of Publication:

    2016-10-01

  • Journal:

    NUCLEAR FUSION

  • Included Journals:

    SCIE、EI、Scopus

  • Document Type:

    J

  • Volume:

    56

  • Issue:

    10

  • ISSN No.:

    0029-5515

  • Key Words:

    SOLPS modeling; lithium injection; divertor; edge plasma

  • Abstract:

    Edge fluid-plasma/kinetic-neutral SOLPS [1, 2] modeling of lithium (Li) transport and its effect on the edge plasma during real-time Li injection H-mode discharge on the EAST tokamak are analysed in this work. Since Li has strong chemical activity, deuterium (D) recycling is suppressed by a Li coated plasma-facing wall. By comparing the simulated edge plasma parameters between the no Li case and the Li injection case, it is found that both of the D atom and molecule densities in the divertor region are reduced with the Li injection. It is also found that most of the radiated power is radiated in the divertor. The simulation provides and analyzes the distributions of each Li ion charge state, and the evolution of Li impurity distribution. The simulation shows that the Li+ prefers to accumulate on the high-field side than on the low-field side, which is in qualitative agreement with the experimental measurements on EAST. The possible reason for the Li+ preferential accumulation is discussed in this study.

Pre One:Effects of discharge operation regimes and magnetic field geometry on the in-out divertor asymmetry in EAST

Next One:SOLPS5.1 analysis of detachment with drifts and gas pumping effects in EAST