Stabilization of resistive wall mode and improved plasma performance in a low-aspect-ratio reversed field pinch by a single mode control power supply system

IF 0.4 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Tomoyuki Nagano, Akio Sanpei, Sadao Masamune
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引用次数: 0

Abstract

Stabilization of resistive wall modes (RWMs) is one of the important issues in magnetic fusion research. In the reversed field pinch (RFP), the number of unstable RWMs becomes smaller by lowering the aspect ratio (A), the ratio of the minor to major radius of the device. In REversed field pinch of Low-Aspect ratio eXperiment (RELAX), whose aspect ratio is 2, unstable m/= 1/2 RWM was stabilized by a single mode control power supply system with improvements of discharge performance. In this paper we report new results with modified power supply system in which magnetic boundary condition near the poloidal gaps is controlled. The modified power supply system is designed to stabilize the most unstable m/= 1/2 mode by use of the saddle coil array covering the whole torus with eight (8) power supplies. The results show that the discharge duration is improved from ~ 3.0 ms to ~ 4.0 ms, limited by the capability of the iron core in RELAX device. Stabilization of the dominant RWM with the resultant improved plasma performance by a single mode control power supply system shows one of the advantages of a low-aspect-ratio RFP concepts.

单模控制电源系统在低宽高比反向场箝位下稳定电阻壁模式和改善等离子体性能
电阻壁模的稳定是磁聚变研究中的一个重要问题。在反向场挤压(RFP)中,通过降低长径比(A),即器件的小半径与大半径之比,不稳定RWMs的数量会减少。在低纵横比实验(RELAX)中,当纵横比为2时,单模控制电源系统稳定了不稳定的m/n = 1/2 RWM,提高了放电性能。本文报道了一种改进电源系统的新结果,该系统在极向间隙附近的磁边界条件得到了控制。改进后的供电系统采用鞍形线圈阵列,用8个电源覆盖整个环面,以稳定最不稳定的m/n = 1/2模式。结果表明,受RELAX器件铁芯性能的限制,放电时间由~ 3.0 ms提高到~ 4.0 ms。通过单模控制电源系统稳定主导RWM,从而提高等离子体性能,这是低纵横比RFP概念的优点之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Electrical Engineering in Japan
Electrical Engineering in Japan 工程技术-工程:电子与电气
CiteScore
0.80
自引率
0.00%
发文量
51
审稿时长
4-8 weeks
期刊介绍: Electrical Engineering in Japan (EEJ) is an official journal of the Institute of Electrical Engineers of Japan (IEEJ). This authoritative journal is a translation of the Transactions of the Institute of Electrical Engineers of Japan. It publishes 16 issues a year on original research findings in Electrical Engineering with special focus on the science, technology and applications of electric power, such as power generation, transmission and conversion, electric railways (including magnetic levitation devices), motors, switching, power economics.
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