中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Radiation-driven m=2 island formation and dynamics near density limit in experimental advanced superconducting tokamak ohmic plasma

文献类型:期刊论文

作者Xu, Liqing; Duan, Yanmin; Chen, Kaiyun; Zhao, Hailin; Luo, Zhenping; Zheng, Zhen; Liu, Yong; Liu, Haiqing; Chen, Yingjie; Yi, Yuan
刊名NUCLEAR FUSION
出版日期2017-12-01
卷号57期号:12
关键词M=2 Island Radiation Density Limit East Ohmic Discharge
DOI10.1088/1741-4326/aa7f91
文献子类Article
英文摘要A radiation-driven m = 2 island was observed in the experimental advanced superconducting tokamak (EAST) ohmic plasma, near the density limit. The mode onset occurs when the the ohmic heating input is less than the radiative cooling loss, which agrees with the mode onset behavior of the thermo-resistive model. The evolution of the equilibrium during the mode process was obtained using the ONETWO transport code, with inputs comprising the experimental electron temperature and density profiles. A large m = 2 island can drive an m = 1 sideband mode, which leads to an internal crash that appears as a large change in temperature that occurs not only in the q = 2 region but also in the core.
WOS关键词TEARING MODE ; DISRUPTIONS ; EAST
WOS研究方向Physics
语种英语
WOS记录号WOS:000410407500002
资助机构National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; 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JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; National Nature Science Foundation of China(11505226 ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; JSPS-NRF-NSFCA3 Foresight Program in the field of Plasma Physics (NSFC)(11261140328) ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; CSC ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247) ; 11575247)
源URL[http://ir.hfcas.ac.cn:8080/handle/334002/33656]  
专题合肥物质科学研究院_中科院等离子体物理研究所
作者单位Chinese Acad Sci, Inst Plasma Phys, Hefei 230031, Anhui, Peoples R China
推荐引用方式
GB/T 7714
Xu, Liqing,Duan, Yanmin,Chen, Kaiyun,et al. Radiation-driven m=2 island formation and dynamics near density limit in experimental advanced superconducting tokamak ohmic plasma[J]. NUCLEAR FUSION,2017,57(12).
APA Xu, Liqing.,Duan, Yanmin.,Chen, Kaiyun.,Zhao, Hailin.,Luo, Zhenping.,...&Shi, Tonghui.(2017).Radiation-driven m=2 island formation and dynamics near density limit in experimental advanced superconducting tokamak ohmic plasma.NUCLEAR FUSION,57(12).
MLA Xu, Liqing,et al."Radiation-driven m=2 island formation and dynamics near density limit in experimental advanced superconducting tokamak ohmic plasma".NUCLEAR FUSION 57.12(2017).

入库方式: OAI收割

来源:合肥物质科学研究院

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