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Toroidal rotation induced by 4.6 GHz lower hybrid current drive on EAST tokamak

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【作者】 尹相辉陈俊胡睿佶李颖颖王福地符佳丁伯江王茂刘甫坤臧庆石跃江吕波万宝年EAST team

【Author】 Xiang-Hui Yin;Jun Chen;Rui-Ji Hu;Ying-Ying Li;Fu-Di Wang;Jia Fu;Bo-Jiang Ding;Mao Wang;Fu-Kun Liu;Qing Zang;Yue-Jiang Shi;Bo Lyu;Bao-Nian Wan;EAST team;Institute of Plasma Physics, Chinese Academy of Sciences;School of Nuclear Science and Technology, University of Science and Technology of China;Department of Nuclear Engineering, Seoul National University;

【机构】 Institute of Plasma Physics, Chinese Academy of SciencesSchool of Nuclear Science and Technology, University of Science and Technology of ChinaDepartment of Nuclear Engineering, Seoul National University

【摘要】 Using a tangentially viewing x-ray imaging crystal spectrometer, substantial co-current rotation driven by lower hybrid current drive(LHCD) at 4.6 GHz is observed on EAST tokamak. This study presents plasma rotation behaviors with 4.6 GHz LHCD injection. Typically, the 10-20 km/s co-current rotation change and the transport of rotation velocity from edge to core are observed. The relationship between plasma parameters and rotation is also investigated, indicating that rotation decreases with increasing internal inductance(li) and increases with increasing safety factor(q0). Hysteresis between rotation and Te plasma stored energy is observed, suggesting different response times between the electron heating and rotation acceleration by LHCD. A comparison between the rotations driven by 4.6 G LHCD and 2.45 G LHCD on EAST is also presented, in which higher frequency LHCD could induce more rotation changes.

【Abstract】 Using a tangentially viewing x-ray imaging crystal spectrometer, substantial co-current rotation driven by lower hybrid current drive(LHCD) at 4.6 GHz is observed on EAST tokamak. This study presents plasma rotation behaviors with 4.6 GHz LHCD injection. Typically, the 10-20 km/s co-current rotation change and the transport of rotation velocity from edge to core are observed. The relationship between plasma parameters and rotation is also investigated, indicating that rotation decreases with increasing internal inductance(li) and increases with increasing safety factor(q0). Hysteresis between rotation and Te plasma stored energy is observed, suggesting different response times between the electron heating and rotation acceleration by LHCD. A comparison between the rotations driven by 4.6 G LHCD and 2.45 G LHCD on EAST is also presented, in which higher frequency LHCD could induce more rotation changes.

【基金】 Project supported by the National Magnetic Confinement Fusion Science Program of China(Grant Nos.2013GB112004 and 2015GB103002);the National Natural Science Foundation of China(Grant Nos.11405212 and 11261140328);the Major Program of Development Foundation of Hefei Center for Physical Science and Technology China(Grant No.2016FXZY008)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2017年11期
  • 【分类号】TL631.24
  • 【被引频次】1
  • 【下载频次】17
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