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Physical design of a new set of high poloidal mode number coils in the EAST tokamak

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摘要 An external resonant magnetic perturbation(RMP)field,which is an effective method to mitigate or suppress the edge localized mode(ELM),has been planned to be applied on the ELM control issue in ITER.A new set of magnetic perturbation coils,named as high m coils,has been developed for the EAST tokamak.The magnetic perturbation field of the high m coils is localized in the midplane of the low field side,with the spectral characteristic of high m and wide n,where m and n are the poloidal and toroidal mode numbers,respectively.The high m coils generate a strong localized perturbation field.Edge magnetic topology under the application of high m coils should have either a small or no stochastic region.With the combination of the high m coils and the current RMP coils in the EAST,flexible working scenarios of the magnetic perturbation field are available,which is beneficial for ELM control exploration on EAST.Numerical simulations have been carried out to characterize the high m coil system,including the magnetic spectrum and magnetic topology,which shows a great flexibility of magnetic perturbation variation as a tool to investigate the interaction between ELM and external magnetic perturbation.
作者 Liang LIAO Yunfeng LIANG Shaocheng LIU Huaxiang ZHANG Xiang JI Youwen SUN Wenyin WEI Huihui WANG Jinping QIAN Liang WANG Manni JIA Long ZENG Xiang GAO the EAST Team 廖亮;梁云峰;刘少承;张华祥;戢翔;孙有文;魏文崟;王辉辉;钱金平;王亮;贾曼妮;曾龙;高翔;the EAST Team(Institute of Plasma Physics,Hefei Institutes of Physical Science,Chinese Academy of Sciences,Hefei 230031,People's Republic of China;University of Science and Technology of China,Hefei 230026,People's Republic of China;Forschungszentrum Jülich GmbH,Institut für Energie-und Klimaforschung-Plasmaphysik,Partner of the Trilateral Euregio Cluster(TEC),Jülich D-52425,Germany;International Joint Research Laboratory of Magnetic Confinement Fusion and Plasma Physics,State Key Laboratory of Advanced Electromagnetic Engineering and Technology,School of Electrical and Electronic Engineering,Huazhong University of Science and Technology,Wuhan 430074,People's Republic of China)
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2022年第3期106-113,共8页 等离子体科学和技术(英文版)
基金 supported by National Magnetic Confined Fusion Energy R&D Program of China(Nos.2017YFE0301100,2019YFE03040000 and 2017YFE0301300) National Natural Science Foundation of China(No.11875294) the Science Foundation of Institute of Plasma Physics,Chinese Academy of Sciences(No.DSJJ-2021-01) the Collaborative Innovation Program of Hefei Science Center,CAS(No.2021HSC-CIP019)。
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