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Comparison of simulated and experimental results of temperature distribution in a closed two-phase thermosyphon cooling system
[摘要] Superconducting generators offer numerous advantages over conventional generators of the same rating. They are lighter, smaller and more efficient. Amongst a host of methods for cooling HTS machinery, thermosyphon-based cooling systems have been employed due to their high heat transfer rate and near-isothermal operating characteristics associated with them. To use them optimally, it is essential to study thermal characteristics of these cryogenic thermosyphons. To this end, a stand-alone neon thermosyphon cooling system with a topology resembling an HTS rotating machine was studied. Heat load tests were conducted on the neon thermosyphon cooling system by applying a series of heat loads to the evaporator at different filling ratios. The temperature at selected points of evaporator, adiabatic tube and condenser as well as total heat leak were measured. A further study involving a computer thermal model was conducted to gain further insight into the estimated temperature distribution of thermosyphon components and heat leak of the cooling system. The model employed boundary conditions from data of heat load tests. This work presents a comparison between estimated (by model) and experimental (measured) temperature distribution in a two-phase cryogenic thermosyphon cooling system. The simulation results of temperature distribution and heat leak compared generally well with experimental data.
[发布日期]  [发布机构] Tokyo University of Marine Science and Technology, 2-1-6 Etchujima, Koto-ku, Tokyo; 135-8533, Japan^1;Kawasaki Heavy Industries. Ltd, 1-1, Kawasaki-cho, Hyogo, Akashi; 673-8666, Japan^2
[效力级别] 物理学 [学科分类] 材料科学(综合)
[关键词] Conventional generators;Cryogenic thermosyphon;High heat transfers;Operating characteristics;Superconducting generator;Thermal characteristics;Thermosyphon cooling;Two-phase thermosyphon [时效性] 
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