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Effect of passive structure and toroidal rotation on resistive wall mode stability in the EAST tokamak

Effect of passive structure and toroidal rotation on resistive wall mode stability in the EAST tokamak
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摘要 If βN exceeds βNno-wall, the plasma will be unstable because of external kink and resistive wall mode (RWM). In this article, the effect of the passive structure and the toroidal rotation on the RWM stability in the experimental advanced superconducting tokamak (EAST) are simulated with CHEASE and MARS codes. A model using a one-dimensional (1D) surface to present the effect of the passive plate is proved to be credible. The no wall fiN limit is about 3li, and the ideal wall βN limit is about 4.5li on EAST. It is found that the rotation near the q = 2 surface and the plasma edge affects the RWM more. If βN exceeds βNno-wall, the plasma will be unstable because of external kink and resistive wall mode (RWM). In this article, the effect of the passive structure and the toroidal rotation on the RWM stability in the experimental advanced superconducting tokamak (EAST) are simulated with CHEASE and MARS codes. A model using a one-dimensional (1D) surface to present the effect of the passive plate is proved to be credible. The no wall fiN limit is about 3li, and the ideal wall βN limit is about 4.5li on EAST. It is found that the rotation near the q = 2 surface and the plasma edge affects the RWM more.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第7期523-528,共6页 中国物理B(英文版)
基金 supported by the National Magnetic Confinement Fusion Science Program of China(Grant Nos.2012GB105000,2011GB101000,2011GB107000,and 2013013GB102000) the National Natural Science Foundation of China(Grant Nos.10725523,10721505,10090212,111005037,and 11205199)
关键词 resistive wall mode passive structure ROTATION resistive wall mode, passive structure, rotation
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