中国物理B ›› 2017, Vol. 26 ›› Issue (9): 95205-095205.doi: 10.1088/1674-1056/26/9/095205
• PHYSICS OF GASES, PLASMAS, AND ELECTRIC DISCHARGES • 上一篇 下一篇
Jingbo Chen(陈竞博), Yanmin Duan(段艳敏), Zhongshi Yang(杨钟时), Liang Wang(王亮), Kai Wu(吴凯), Kedong Li(李克栋), Fang Ding(丁芳), Hongmin Mao(毛红敏), Jichan Xu(许吉禅), Wei Gao(高伟), Ling Zhang(张凌), Jinhua Wu(吴金华), Guang-Nan Luo(罗广南), EAST Team
Jingbo Chen(陈竞博)1,2, Yanmin Duan(段艳敏)1, Zhongshi Yang(杨钟时)1,2, Liang Wang(王亮)1, Kai Wu(吴凯)1,2, Kedong Li(李克栋)1,2, Fang Ding(丁芳)1, Hongmin Mao(毛红敏)1, Jichan Xu(许吉禅)1,2, Wei Gao(高伟)1, Ling Zhang(张凌)1, Jinhua Wu(吴金华)1, Guang-Nan Luo(罗广南)1,2, EAST Team1
摘要: To investigate the radiative divertor behavior and physics for the scenario of impurity seeded plasma in ITER, the radiative divertor experiments with argon (Ar) seeding under ITER-like tungsten divertor condition were carried out during recent EAST campaigns. The experimental results reveal the high efficiency of reducing heat load and particle flux onto the divertor targets owing to increased radiation by Ar seeding. We achieve detached plasmas in these experiments. The inner-outer divertor asymmetry reduces after Ar seeding. Impurities, such as Ar, C, Li, and W, exist in the entire space of the vacuum chamber during EAST operations, and play important roles in power exhausting and accelerating the plasma detachment process. It is remarkable that the contamination of the core plasma is observed using Ar seeding owing to the sputtering of plasma facing components (PFCs), particularly when Ar impurity is injected from the upper tungsten divertor.
中图分类号: (Power exhaust; divertors)