Development of a removable three-dimensional magnetic probe system for measuring field null on the NanChang Spherical Tokamak

托卡马克 电磁线圈 欧姆接触 磁场 等离子体 限制器 物理 环面 焦耳加热 机械 核磁共振 原子物理学 材料科学 电气工程 电极 核物理学 工程类 量子力学
作者
Tanglin Ouyang,Hui Chen,S. Q. Liu,Xuan-xuan CHEN,Xiaoli Yang,Ming Hou,ZuYang Zhao
出处
期刊:Review of Scientific Instruments [American Institute of Physics]
卷期号:94 (1) 被引量:3
标识
DOI:10.1063/5.0125948
摘要

The field null configuration of a poloidal magnetic field is one of the critical conditions for achieving Ohmic breakdown during the initial discharge of a new tokamak. The issue of the Ohmic breakdown on the NanChang Spherical Tokamak (NCST) is still not solved satisfactorily although plasma currents of about 2 kA were found. Hence, a removable three-dimensional magnetic probe (RTMP) system consisting of 25 magnetic probes was designed, calibrated, and constructed on the NCST to evaluate the field null inside a vacuum vessel. After repeated tests, the RTMP system exhibited outstanding performance in terms of accuracy and stability with errors of about 1%. Meanwhile, the RTMP system successfully measured the toroidal field (TF) coil ripples at the magnetic axis. During experiments, the stray field arising from the TF coil implied a strong link between the flexible connection of the TF coil and the Ohmic breakdown on the NCST. After the field null was effectively modified by using a new flexible connection of the TF coil and controlling the induced current in the poloidal field coil, the NCST tokamak reproducibly obtained 20 kA plasma current with the limiter configuration during the plasma current flat-top phase.
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