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Mitigation of plasma-material interactions via passive Li efflux from the surface of a flowing liquid lithium limiter in EAST

  • G. Z. Zuo
  • , J. S. Hu
  • , R. Maingi
  • , J. Ren
  • , Z. Sun
  • , Q. X. Yang
  • , Z. X. Chen
  • , H. Xu
  • , K. Tritz
  • , L. E. Zakharov
  • , C. Gentile
  • , X. C. Meng
  • , M. Huang
  • , W. Xu
  • , Y. Chen
  • , L. Wang
  • , N. Yan
  • , S. T. Mao
  • , Z. D. Yang
  • , J. G. Li
  • CAS - Institute of Plasma Physics
  • Princeton Plasma Physics Laboratory
  • Johns Hopkins University
  • LiWallFusion
  • Hunan University

科研成果: 期刊稿件文章同行评审

58 引用 (Scopus)

摘要

A new flowing liquid Li limiter (FLiLi) based on the concept of a thin flowing film has been successfully designed and tested in the EAST device in 2014. A bright Li radiative mantle at the plasma edge was observed during discharges using FLiLi, resulting from passive Li injection and transport in the scrape-off layer (SOL) plasma. Li particle efflux from the FLiLi surface into the plasma was estimated at >5 × 1020 atom s-1, due to surface evaporation and sputtering, and accompanied with a few small Li droplets ∼1 mm diameter that were ejected from FLiLi. The Li efflux from FLiLi was ionized by the SOL plasma and formed a Li radiation band that originated from the FLiLi surface, and then spread toroidally by SOL plasma flow. The Li radiative mantle appeared to partly isolate the plasma from the wall, reducing impurity release from the wall materials, and possibly leading to a modest improvement in confinement. In addition, strong Li radiation reduced the particle and heat fluxes impacting onto the divertor plate, with certain similarities to heat flux reduction and detachment onset via low-Z impurity injection.

源语言英语
文章编号046017
期刊Nuclear Fusion
57
4
DOI
出版状态已出版 - 2 3月 2017

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