New high-field side magnetic probe array system for three-dimensional magnetic fluctuation measurements on EAST

IF 1.9 3区 工程技术 Q1 NUCLEAR SCIENCE & TECHNOLOGY Fusion Engineering and Design Pub Date : 2024-08-29 DOI:10.1016/j.fusengdes.2024.114636
H. Lan , T.H. Shi , N. Yan , X.Q. Li , S. Li , R. Chen , M.Y. Duan , L.N. Liu , M. Chen , L.X. Chen , D.L. Chen , B. Shen , Y. Wang , Z.H. Xu , Z.K. Lu , L.M. Shao , Y.Y. Zheng , Z. Yuan , L.Q. Xu , G.H. Hu , G.S. Xu
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Abstract

To better study the magnetic fluctuations in the high-field side of EAST tokamak, a new high-field side magnetic probe array (HFS-MPA) has been developed on EAST recently. The HFS-MPA consists of 12 identical three-dimensional (3D) magnetic probes, which are mounted on the HFS wall with carefully designed arrangement. The HFS-MPA magnetic probes bring additional toroidal magnetic fluctuation measurements compared with the HFS regular magnetic probes which can only provide poloidal and radial magnetic fluctuation measurements. The upper limits of frequency and toroidal mode number (n) measurements of the magnetic fluctuations have been improved by comparing HFS-MPA with the HFS regular magnetic probes, i.e., 650 kHz vs 100 kHz and n = 23 vs n = 1. In developing the HFS-MPA diagnostic system, many practical challenges have been overcome and many special designs have been developed. These will be mentioned in the main subsystem description of the HFS-MPA diagnostic in this paper, which might be useful for developing new magnetic probe diagnostics in the future on EAST or other magnetically confined fusion devices. The calibration of the effective area and frequency response of the HFS-MPA is also described. The preliminary application in studying the frequency and propagation characteristics of the magnetic fluctuations with HFS-MPA compared with EAST regular magnetic probes shows that the HFS-MPA is well developed for plasma physics studies.

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用于 EAST 三维磁波动测量的新型高场侧磁探针阵列系统
为了更好地研究EAST托卡马克高场面的磁波动,最近在EAST上开发了一个新的高场面磁探针阵列(HFS-MPA)。HFS-MPA由12个相同的三维(3D)磁探针组成,它们以精心设计的排列方式安装在HFS壁上。与只能提供极磁场和径向磁场波动测量的 HFS 普通磁探头相比,HFS-MPA 磁探头可提供额外的环磁场波动测量。通过将 HFS-MPA 与 HFS 常规磁探针进行比较,磁波动的频率和环模数(n)测量上限得到了提高,即 650 kHz 对 100 kHz,n = 23 对 n = 1。在开发 HFS-MPA 诊断系统的过程中,我们克服了许多实际挑战,并开发了许多特殊设计。本文将在 HFS-MPA 诊断系统的主要子系统描述中提及这些设计,它们可能对未来在 EAST 或其他磁约束聚变装置上开发新的磁探针诊断系统有用。本文还介绍了 HFS-MPA 有效面积和频率响应的校准。与 EAST 常规磁探针相比,HFS-MPA 在研究磁波动的频率和传播特性方面的初步应用表明,HFS-MPA 在等离子体物理研究方面发展良好。
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来源期刊
Fusion Engineering and Design
Fusion Engineering and Design 工程技术-核科学技术
CiteScore
3.50
自引率
23.50%
发文量
275
审稿时长
3.8 months
期刊介绍: The journal accepts papers about experiments (both plasma and technology), theory, models, methods, and designs in areas relating to technology, engineering, and applied science aspects of magnetic and inertial fusion energy. Specific areas of interest include: MFE and IFE design studies for experiments and reactors; fusion nuclear technologies and materials, including blankets and shields; analysis of reactor plasmas; plasma heating, fuelling, and vacuum systems; drivers, targets, and special technologies for IFE, controls and diagnostics; fuel cycle analysis and tritium reprocessing and handling; operations and remote maintenance of reactors; safety, decommissioning, and waste management; economic and environmental analysis of components and systems.
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