摘要
To extend the operation region of the Joint-Texas Experimental tokamak(J-TEXT) to the divertor configuration and even the H-mode,the divertor configuration discharge has been realized for the first time in the J-TEXT tokamak.Along with the establishment of a power supply for the divertor configuration,the construction of relevant diagnostics,and the installation of the divertor target on the high-field side,divertor discharge has been tested.Through the equilibrium calculation and position stability analysis,the control strategy has evolved to be more stable.High-density experiments and auxiliary heating experiments have been carried out on the divertor configuration.The special midplane single-null(MSN) divertor configuration is shown to be more stable than the limiter configuration in the density limit condition and can reach a higher density in the experiment.In the ECRH experiment,the power injection enhances the electron temperature and density,while more heat outflux is loaded on the divertor target tiles and causes more intensive recycling and impurity release.The future plan for the divertor configuration operation in the J-TEXT tokamak is also included.
作者
Zhipeng CHEN
Lizhi ZHU
Xin XU
Wei ZHENG
Ming ZHANG
Li GAO
Minghui XIA
Jie YANG
Mingchong ZHU
Zhigang HAO
Shaodong JIAO
Zhifeng CHENG
Zhoujun YANG
Xiaoqing ZHANG
Zhongyong CHEN
Nengchao WANG
Yonghua DING
Ge ZHUANG
Kenneth W GENTLE
Yunfeng LIANG
Yuan PAN
the J-TEXT Team
陈志鹏;朱立志;徐鑫;郑玮;张明;高丽;夏明辉;阳杰;朱明聪;郝志刚;焦少东;程芝峰;杨州军;张晓卿;陈忠勇;王能超;丁永华;庄革;Kenneth W GENTLE;梁云峰;潘垣;the J-TEXT Team(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;Department of Engineering and Applied Physics School of Physical Sciences,University of Science and Technology of China,Hefei 230026,People's Republic of China;Institute for Fusion StudiesUniversity of Texas,Austin TX 78712,United States of America;Forschungszentrum Jülich GmbH,Institut für Energie-und Klimaforschung—Plasmaphysik,Partner of the Trilateral Euregio Cluster(TEC),Jülich 52425,Germany;Institute of Plasma Physics,Chinese Academy of Sciences,Hefei 230031,People's Republic of China)
基金
supported by the National MCF Energy R&D Program of China(Nos.2018YFE0301104 and 2018YFE0310300)
National Natural Science Foundation of China(No.51821005)