KTM 托卡马克等离子体 ICR 加热系统的优化和启动准备工作

IF 1.9 3区 工程技术 Q1 NUCLEAR SCIENCE & TECHNOLOGY
A.V. Gulkin , B. Zh. Chektybayev , A.N. Satibekov , A.T. Kusainov , K. Zhenis , D.A. Olkhovik , D.B. Zarva , S.V. Kotov , S.A. Mukeneva , V.V. Dyachenko , V.B. Minaev , N.V. Sakharov , N.N. Bakharev , V.V. Solokha , V.I. Varfolomeev , E.G. Zhilin , P.A. Korepanov , A.M. Gubin
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引用次数: 0

摘要

本文介绍并讨论了 KTM 托卡马克高频等离子体加热系统启动准备工作的研究成果。通过计算确定了 KTM 托卡马克等离子体最有效吸收高频辐射的参数,并介绍了对 KTM 托卡马克等离子体高频加热系统发生器的天线馈电装置频率响应的测量结果。测量结果表明,KTM 托卡马克等离子体在 14 兆赫频率下可以获得更有效的等离子体加热。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization and preparation for the start-up of the plasma ICR heating system at the KTM tokamak

The paper presents and discusses the results of the research on the preparation of the HF plasma heating system of the KTM tokamak for the start-up. The calculations have been performed to determine the parameters at which the most effective absorption of the HF radiation by the plasma of the KTM tokamak was expected, the results of measurements of the frequency response of the antenna-feeder device of the HF heating system generator of the KTM tokamak plasma have been presented. The result of the carried out work have shown that more efficient plasma heating on a KTM tokamak can be obtained at a frequency of 14 MHz.

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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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