Particles Behavior in Quasi-Steady-State AC Plasmas on HT-7 Tokamak  

Particles Behavior in Quasi-Steady-State AC Plasmas on HT-7 Tokamak

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作  者:揭银先 高翔 Kenji TANAKA 杨曜 徐强 高伟 李建刚 

机构地区:[1]Institute of Plasma Physics,Chinese Academy of Sciences [2]National Institute for Fusion Science

出  处:《Plasma Science and Technology》2009年第4期422-426,共5页等离子体科学和技术(英文版)

基  金:National Natural Science Foundation of China (No.10675125);the JSPS-CAS Core-University Program in the field of Plasma and Nuclear Fusion

摘  要:A quasi-stationary alternating current (AC) operation assisted by lower hybrid waves (LHW) was achieved recently in HT-7. It is found that the particle confinement time of the positive current plasma is lower than that of the negative current plasma. The particle transport coefficients are investigated in AC plasmas by a gas puff modulation method. It is observed that the particle diffusion coefficient for the positive plasma current case is almost the same as that for the negative one, but the absolute value of inward pinch velocity for the positive current plasma is much lower than Vhat of the negative one. The result of the particle transport model study is in agreement with the experimental confinement study. The intensity of Hα emission and impurities emission of CⅢ, OII and OV for the negative current plasma are much lower than that for the positive current plasma. The radiation from Hα, OⅡ, CⅢ and ECE signals from the negative to the positive current phase showed less ionization and lower parameters than those from the positive to the negative one. The difference of particle transport and confinement in AC plasmas is not predicted by the current theory.A quasi-stationary alternating current (AC) operation assisted by lower hybrid waves (LHW) was achieved recently in HT-7. It is found that the particle confinement time of the positive current plasma is lower than that of the negative current plasma. The particle transport coefficients are investigated in AC plasmas by a gas puff modulation method. It is observed that the particle diffusion coefficient for the positive plasma current case is almost the same as that for the negative one, but the absolute value of inward pinch velocity for the positive current plasma is much lower than Vhat of the negative one. The result of the particle transport model study is in agreement with the experimental confinement study. The intensity of Hα emission and impurities emission of CⅢ, OII and OV for the negative current plasma are much lower than that for the positive current plasma. The radiation from Hα, OⅡ, CⅢ and ECE signals from the negative to the positive current phase showed less ionization and lower parameters than those from the positive to the negative one. The difference of particle transport and confinement in AC plasmas is not predicted by the current theory.

关 键 词:AC plasma particle transport coefficients particle confinement time 

分 类 号:TL631.24[核科学技术—核技术及应用] TB333[一般工业技术—材料科学与工程]

 

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