High Power Laser and Particle Beams, Volume. 34, Issue 6, 063001(2022)
Design of high efficiency forced air cooling heat dissipation system for collector of high-power klystron
[2] [2] Wu Yao. Research on heat dissipation technology of the collect of relativistic klystron amplifier[D]. Chengdu: University of Electronic Science Technology, 2016: 728
[3] Gahlaut V, Alvi P A, Ghosh S K. Thermal and structural analysis of co-axial coupler used in high power helix traveling-wave tube[J]. Frequenz, 68, 329-333(2014).
[8] [8] Ding Yaogen. Design, manufacture application of high power klystron[M]. Beijing: National Defense Industry Press, 2010
[9] [9] Konnov A V, Nikitin A P, Akimov P I, et al. Thermal analysis of multibeam klystron collect with fced air cooling[C]2014 Tenth International Vacuum Electron Sources Conference (IVESC). 2014: 12.
[11] [11] Yang Chun, Gao Hongbin. Fluid mechanics pumps fans[M]. Beijing: China Water Resources hyower Press, 2011
[12] Gahlaut V, Latha A M, Sharma R K, et al. Thermal management techniques for novel single-stage collector of THz folded waveguide TWT[J]. IEEE Transactions on Plasma Science, 49, 689-694(2021).
[14] [14] Jiang Xueping. Influence of centralized heat supply on heat exchange property of radiat & the solutions[D]. Nanjing: Nanjing University of Aeronautics Astronautics, 2005
[15] Ruuskanen V, Nerg J, Niemelä M, et al. Effect of radial cooling ducts on the electromagnetic performance of the permanent magnet synchronous generators with double radial forced air cooling for direct-driven wind turbines[J]. IEEE Transactions on Magnetics, 49, 2974-2981(2013).
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Lei Lei, Yu Zhou, Dongping Gao, Quanju Shi. Design of high efficiency forced air cooling heat dissipation system for collector of high-power klystron[J]. High Power Laser and Particle Beams, 2022, 34(6): 063001
Category: High Power Microwave Technology
Received: Dec. 29, 2021
Accepted: Mar. 3, 2022
Published Online: Jun. 2, 2022
The Author Email: Dongping Gao (dongpinggao@mail.ie.ac.cn)