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Observation and characterization of the effect of electron cyclotron waves on toroidal rotation in EAST L-mode discharges

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【作者】 陈俊胡睿佶吕波王福地王晓洁徐旵东李颖颖符佳尹相辉吴大俊刘甫坤臧庆刘海庆石跃江毛世峰余羿万宝年叶民友沈永才EAST team

【Author】 Jun CHEN;Ruiji HU;Bo LYU;Fudi WANG;Xiaojie WANG;Handong XU;Yingying LI;Jia FU;Xianghui YIN;Dajun WU;Fukun LIU;Qing ZANG;Haiqing LIU;Yuejiang SHI;Shifeng MAO;Yi YU;Baonian WAN;Minyou YE;Yongcai SHEN;EAST team;School of Nuclear Science and Technology, University of Science and Technology of China;Institute of Plasma Physics, Chinese Academy of Sciences;Department of Nuclear Engineering, Seoul National University;School of Physics and Electrical Engineering of Anqing Normal University;

【机构】 School of Nuclear Science and Technology, University of Science and Technology of ChinaInstitute of Plasma Physics, Chinese Academy of SciencesDepartment of Nuclear Engineering, Seoul National UniversitySchool of Physics and Electrical Engineering of Anqing Normal University

【摘要】 The change in the toroidal rotation of plasma caused by electron cyclotron wave(ECW) injection has been observed in EAST. It is found that the response of the rotation is similar for all possible ECW toroidal injection angles. The core toroidal rotation velocity increases in the co-current direction along with a rise in the plasma temperature and stored energy. The profile of the electron temperature, ion temperature and toroidal rotation velocity gradually become peaked.The change in toroidal rotation in the core increases with the ECW injection power. Different behavior is observed when the ECWs are injected into low hybrid current drive(LHCD) target plasmas, where the electron temperature and rotation profile become peaked, while the ion temperature profile flattens after ECW injection, suggesting different transport characteristics in energy and momentum.

【Abstract】 The change in the toroidal rotation of plasma caused by electron cyclotron wave(ECW) injection has been observed in EAST. It is found that the response of the rotation is similar for all possible ECW toroidal injection angles. The core toroidal rotation velocity increases in the co-current direction along with a rise in the plasma temperature and stored energy. The profile of the electron temperature, ion temperature and toroidal rotation velocity gradually become peaked.The change in toroidal rotation in the core increases with the ECW injection power. Different behavior is observed when the ECWs are injected into low hybrid current drive(LHCD) target plasmas, where the electron temperature and rotation profile become peaked, while the ion temperature profile flattens after ECW injection, suggesting different transport characteristics in energy and momentum.

【基金】 supported by the National Magnetic Confinement Fusion Science Program of China (2013GB112004, 2015GB103002);National Natural Science Foundation of China (11305212, 11405212);the MajorProgram of Development Foundation of Hefei Center for Physical Science and Technology (2016FXZY008);the Natural Science Research Key Project of the Education Department of Anhui Province under grant No. KJ2016A434
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2017年10期
  • 【分类号】TL631.24
  • 【被引频次】4
  • 【下载频次】25
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