Experimental Advanced Superconducting Tokamak (EAST), as a fully superconducting tokamak in China, aims to achieve high performance plasma under steady-state operation. To fulfill the physical objectives of EAST, a program of 4-MW long pulse electron cyclotron resonance heating and current drive (EC H&CD) system, which would offer greater flexibility for plasma shape and plasma stabilization has been launched on EAST since 2011. The system, composed of 4 gyrotrons with nominal 1MW output power and 1000s pulse length each, is designed with the feature of steerable power handling capabilities at 140 GHz, using second harmonic of the extraordinary mode(X2). The missions of the ECRH system are to provide plasma heating, current drive, plasma profile tailoring and control of magneto-hydrodynamic (MHD) instabilities. Presently, the first two 140-GHz 1-MW gyrotrons, provided by GYCOM and CPI, respectively, have been tested at long pulse operation. The tubes, the associated power supplies, cooling system, cryogenic plant, 2 transmission lines and an equatorial launcher are now installed at EAST. The power generated from each tube will be transmitted by an evacuated corrugated waveguide transmission line and injected into plasma from the low field side (radial port) through a front steering equatorial launcher. Considering the diverse applications of the EC system, the beam’s launch angles can be continuously varied with the optimized scanning range of over 30° in poloidal direction and ±25° in toroidal, as well as the polarization could be adjusted during the discharge by the orientations of a pair of polarizers in the transmission line to maintain the highest absorption for different operational scenarios. The commissioning of the first 2MW ECRH plant for EAST is under way. The design, R&D activities and recent progress of the long pulse 140-GHz ECRH system are presented in this paper. As the technological requirements for EAST ECRH have many similarities with ITER devices, the installation and experience of EAST ECRH system may provide valuable data for the ITER.
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10 December 2015
RADIO FREQUENCY POWER IN PLASMAS: Proceedings of the 21st Topical Conference
27–29 April 2015
California, USA
Research Article|
December 10 2015
Research on long pulse ECRH system of EAST in support of ITER Free
Xiaojie Wang;
Xiaojie Wang
a)
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Fukun Liu;
Fukun Liu
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Jiafang Shan;
Jiafang Shan
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Handong Xu;
Handong Xu
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Dajun Wu;
Dajun Wu
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Bo Li;
Bo Li
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Wei Wei;
Wei Wei
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
2
Hefei University of Technology
, 230009, Hefei, China
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Yunying Tang;
Yunying Tang
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Liyuan Zhang;
Liyuan Zhang
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Weiye Xu;
Weiye Xu
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Huaichuan Hu;
Huaichuan Hu
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Jiang Wang;
Jiang Wang
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Yong Yang;
Yong Yang
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Li Xu;
Li Xu
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Wendong Ma;
Wendong Ma
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Jianqiang Feng;
Jianqiang Feng
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
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Xiaojie Wang
1,a)
Fukun Liu
1
Jiafang Shan
1
Handong Xu
1
Dajun Wu
1
Bo Li
1
Wei Wei
1,2
Yunying Tang
1
Liyuan Zhang
1
Weiye Xu
1
Huaichuan Hu
1
Jiang Wang
1
Yong Yang
1
Li Xu
1
Wendong Ma
1
Jianqiang Feng
1
ECRH group
1
Institute of Plasma Physics Chinese Academy of Sciences
, Shushan lake road 350, 230031, Hefei, China
2
Hefei University of Technology
, 230009, Hefei, China
a)
Corresponding author: [email protected]
AIP Conf. Proc. 1689, 090007 (2015)
Citation
Xiaojie Wang, Fukun Liu, Jiafang Shan, Handong Xu, Dajun Wu, Bo Li, Wei Wei, Yunying Tang, Liyuan Zhang, Weiye Xu, Huaichuan Hu, Jiang Wang, Yong Yang, Li Xu, Wendong Ma, Jianqiang Feng, ECRH group; Research on long pulse ECRH system of EAST in support of ITER. AIP Conf. Proc. 10 December 2015; 1689 (1): 090007. https://doi.org/10.1063/1.4936544
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