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Overview of the recent experimental research on the J-TEXT tokamak

Authors :
Yonghua Ding
Nengchao Wang
Zhongyong Chen
Donghui Xia
Zhoujun Yang
Zhipeng Chen
Wei Zheng
Wei Yan
Da Li
Song Zhou
Xin Xu
Xiaoyi Zhang
Feiyue Mao
Jiangang Fang
Zhengkang Ren
Xixuan Chen
Junli Zhang
Xiaobo Zhang
Ying He
Qi Zhang
You Li
Wei Bai
Lingke Mou
Feng Li
Ting Long
Rui Ke
Li Gao
Peng Shi
Chengshuo Shen
Jiaxing Liu
Weixin Guo
Lu Wang
Hanhui Li
Zhonghe Jiang
Xiaoqing Zhang
Jianchao Li
Bo Rao
Zhifeng Cheng
Ping Zhu
Minghai Liu
Tao Xu
Shaoxiang Ma
Yong Yang
Chuan Li
Zhijiang Wang
Ming Zhang
Kexun Yu
Xiwei Hu
Y. Liang
Q. Yu
K. W. Gentle
Yuan Pan
the J-TEXT Team
Kenneth William Gentle
Qingquan Yu
Yunfeng Liang
Wei Jiang
Lin Yi
Ya Zhang
Qiming Hu
Mingxiang Huang
Haolong Li
Zhuo Huang
Jie Huang
Weijun Wang
Mei He
Qing Zhao
Jiayu Xu
Gangyi Zhou
Weigang Ba
Cheng Yang
Junjie Yao
Chuliang Wang
Bo He
Yongzhen Hu
Mingyang Deng
Jingwei Fu
Meiling Liang
Yehong Guan
Hongyan Wu
Ge Zhuang
Weixing Ding
Tao Lan
Shiyong Zeng
Malik Sadam Hussain
Zhifang Lin
Hai Liu
Youwen Sun
Long Zeng
Shaocheng Liu
Liang Liao
Wulyu Zhong
Zhongbing Shi
Min Jiang
Yunbo Dong
Min Xu
Aike Wang
Xiaolong Zhang
Linzi Liu
Ruihai Tong
Jun Cheng
Lin Nie
Hui Li
Jianqiang Xu
Zengchen Yang
Jie Wen
Anshu Liang
Yipo Zhang
Yifan Wu
Chengyuan Chen
Kaijun Zhao
Yuejiang Shi
He Huang
Max Austin
Sanggon Lee
Jr Neville C. Luhmann
Calvin W. Domier
Yilun Zhu
David L. Brower
Jie Chen
K. Ida
Y. Takemura
Y. Suzuki
K. Nagasaki
P. Drews
A. Knieps
Xiang Han
A. Krämer-Flecken
M. Henkel
Jiyang He
Yinan Zhou
Ruo Jia
Yue Peng
Pengyu Wang
Jiawei Li
Jie Yang
Conghui Lu
Yiwei Lu
Rumeng Wang
Hongqi Zhang
Yingqin Zeng
Guodong Zhang
Fangyuan Ma
Abba Alhaji Bala
Dingchen Li
Jiankun Hua
Xinkun Ai
Qinlin Tao
Yu Zhong
Yangbo Li
Xiangrui He
Sui Wan
Shanni Huang
Yiming Ma
Zitong Qu
Shimin Yu
Zhangsheng Huang
Chi Lei
Qinghu Yang
Fengming Xue
Chuanxu Zhao
Junhui Yang
Zili Chen
Jingmin Yang
Shengyang Xiao
Shiwei Xue
Wentao Geng
Jian Zhang
Xiong Tao
Zhigang Hao
Qiong Li
Jinyu Xiong
Huakun Cai
Mingzhu Zhang
Yaping Zhang
Yangming Zhao
Qiancheng Zhao
Shaodong Jiao
Dongliang Han
Shiyi Peng
Jiaolong Dong
Qinglong Yang
Fan Gu
Zhaosu Wang
Hao Wang
Shu Yang
Yang Zhao
Wang Lin
Guoyao Fan
Kehong Dong
Xiehang Ren
Ce Deng
Feng Han
Jing Liu
Qiqi Wu
Fei Xie
Yujie Zhong
Zinan Wei
Wanjun Qing
Chu Han
Hui Ye
Yingzhou Jiang
Chengyu Yang
Shuhao Li
Jianjun Yuan
Haojie Chen
Xiaobo Liu
Wentong Shang
Shengyuan Guan
Chouyao Tang
Sheng Li
Jiamao Gao
Wenting Weng
Shouqi Xiong
Yuan Gao
Zhichao Zhang
Boliang Zhu
Fuyou He
Feiyang Wu
Xianqian Zha
Tong Guo
Xiaohan Xie
Ruiyang Xu
Weikang Zhang
Zixiao Jiao
Chupin Fu
Chengzhi Guo
Sifen He
Yixing Jiang
Xianghao Kong
Cunkai Li
Zhen Li
Renzhe Liu
Ye Tian
Wenshan Wang
Yuhan Wang
Zutao Wang
Dengfeng Xu
Wendi Yang
Bangyou Zhu
Guangding Zhu
Xiating Mou
Xianlong Liu
Ziyang Jin
Jiaming Wang
Xinyu Cao
Cheng Han
Yanqiu Chen
Fanxi Liu
Haiqing Wang
Wei Xie
Wen Wang
Yutong Yang
Shaoyu Wang
An Mao
Peilong Zhang
Yanhao Zhao
Hengbun Ma
Zhiheng Li
Keze Li
Qiang Luo
Yuting Huang
Menghan Xiao
Yifei Huang
Guinan Zou
Yajun Wang
Dunrui Zhang
Zhi Zhang
Chaoxiang Guo
Bo Hu
Dengkuo Zhang
Junang Zhang
Jinlong Guo
Nan Wang
Qixiong Fu
Yisong Zhang
Jiong Guo
Yinlong Yu
Weijie Lin
Liye Wang
Jingtao Li
Zhangrong Hou
Xiaopeng Yi
Yi Zhang
Runyu Luo
Zijian Xuan
Xiping Jiang
Zisen Nie
Zhiyu Meng
Ziying Jiang
Xinyu Fang
Yuxuan Huang
Ning Peng
Xinyi Jin
Yujun Zhang
Zhongkai Li
Yuchen Zhang
Weimin Fu
Zijuan Dong
Yuhuan Liu
Anqi Hu
Zekai Guo
Weijie Ye
Zhenchang Du
Xun Zhou
Zhiyu Tang
Yan Guo
Zhiwen Yang
Xinchen Yao
Zezhi Yu
Boyu Zhao
Ruomu Wang
Yuwei Sun
Haocheng Wang
Tianyu Zheng
Chaofan Lu
Tianjing Wang
Zhuolong Li
Xiangyu Fu
Yulong Deng
Haojun Yu
Yuan Sheng
Yuanji Sun
Zi’an Mao
Lei Yu
Shaohua Ye
Wenjie Zhang
Qihang Jiang
Yushen Zhou
Jianfeng Zhu
Kexu Liu
Jinqiang Mao
Yunxiao Han
Zhihao Mai
Huchuan Zou
Jianliang Zheng
Zhiqiang Liu
Source :
Nuclear Fusion, Vol 64, Iss 11, p 112005 (2024)
Publication Year :
2024
Publisher :
IOP Publishing, 2024.

Abstract

The J-TEXT capability is enhanced compared to two years ago with several upgrades of its diagnostics and the increase of electron cyclotron resonance heating (ECRH) power to 1 MW. With the application of electron cyclotron wave (ECW), the ECW assisted plasma startup is achieved; the tearing mode is suppressed; the toroidal injection of 300 kW ECW drives around 24 kA current; fast electrons are generated with toroidal injected ECW and the runaway current conversion efficiency increases with ECRH power. The mode coupling between 2/1 and 3/1 modes are extensively studied. The coupled 2/1 and 3/1 modes usually lead to major disruption. Their coupling can be either suppressed or avoided by external resonant magnetic perturbation fields and hence avoids the major disruption. It is also found that the 2/1 threshold of external field is significantly reduced by a pre-excited 3/1 mode, which can be either a locked island or an external kink mode. The disruption control is studied by developing prediction methods capable of cross tokamak application and by new mitigation methods, such as the biased electrode or electromagnetic pellet injector. The high-density operation and related disruptions are studied from various aspects. Approaching the density limit, the collapse of the edge shear layer is observed and such collapse can be prevented by applying edge biasing, leading to an increased density limit. The density limit is also observed to increase, if the plasma is operated in the poloidal divertor configuration or the plasma purity is increased by increasing the pre-filled gas pressure or ECRH power during the start-up phase.

Details

Language :
English
ISSN :
17414326 and 00295515
Volume :
64
Issue :
11
Database :
Directory of Open Access Journals
Journal :
Nuclear Fusion
Publication Type :
Academic Journal
Accession number :
edsdoj.18885b540574493da21f4cd8994201d3
Document Type :
article
Full Text :
https://doi.org/10.1088/1741-4326/ad336e