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論文

Development of multi-purpose MW gyrotrons for fusion devices

南 龍太郎*; 假家 強*; 今井 剛*; 沼倉 友晴*; 遠藤 洋一*; 中林 英隆*; 江口 濯*; 下妻 隆*; 久保 伸*; 吉村 泰夫*; et al.

Nuclear Fusion, 53(6), p.063003_1 - 063003_7, 2013/06

The latest development achievements in University of Tsukuba of over-1 MW power level gyrotrons required in the present-day fusion devices, GAMMA 10, LHD, QUEST, Heliotron J and NSTX are presented. The obtained maximum outputs are 1.9 MW for 0.1 s on the 77 GHz LHD tube and 1.2 MW for 1 ms on the 28 GHz GAMMA 10 one, which are new records in these frequency ranges. In long pulse operation, 0.3 MW for 40 min at 77 GHz and 0.54 MW for 2 s at 28 GHz were achieved. A new program of 154 GHz 1 MW development has started for high density plasma heating in LHD. On the first 154 GHz tube, 1.0 MW for 1 s was achieved. As a next activity of 28 GHz gyrotron, we have already carried out the development of over-1.5 MW gyrotron and design study of the 28 GHz cavity and mode converter has shown the possibility of 2 MW level output and CW operation with several hundred kW. Besides, a new design study of dual frequency gyrotron at 28 GHz and 35 GHz has been started, which indicates the practicability of the multi-purpose gyrotron.

論文

Development of multi-purpose MW gyrotrons for fusion devices

南 龍太郎*; 假家 強*; 今井 剛*; 沼倉 友晴*; 遠藤 洋一*; 中林 英隆*; 江口 濯*; 下妻 隆*; 久保 伸*; 吉村 泰夫*; et al.

Nuclear Fusion, 53(6), p.063003_1 - 063003_7, 2013/06

 被引用回数:12 パーセンタイル:54.31(Physics, Fluids & Plasmas)

The latest development achievements in the University of Tsukuba of over-1 MW power level gyrotrons required in present-day fusion devices, GAMMA 10, Large Helical Device (LHD), QUEST, Heliotron J and NSTX, are presented. The obtained maximum outputs are 1.9 MW for 0.1 s on the 77 GHz LHD tube and 1.2 MW for 1ms on the 28 GHz GAMMA10 one, which are new records in these frequency ranges. In long-pulse operation, 0.3 MW for 40 min at 77 GHz and 0.54 MW for 2 s at 28 GHz are achieved. A new programme of 154 GHz 1 MW development has started for high-density plasma heating in LHD. On the first 154 GHz tube, 1.0 MW for 1 s is achieved. As a next activity of the 28 GHz gyrotron, an over-1.5 MW gyrotron is designed and fabricated to study the multi-MW oscillation. The possibility of 0.4 MW continuous wave and 2 MW level output in operations of a few seconds, after the improvements of output window and mode converter, is shown. Moreover, a new design study of dual-frequency gyrotron at 28 and 35 GHz has started, which indicates the practicability of the multi-purpose gyrotron.

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