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TRANSIENT FLOW AND THERMAL PERFORMANCE OF INTEGRATED DEFLECTOR UNDER PERIODIC SUPERSONIC FLAME IMPINGEMENT

  • J. J. Zhang
  • , Z. G. Qu
  • , R. P. Fu
  • , Y. L. He
  • School of Energy and Power Engineering

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Flow deflector is an effective approach to realize the thermal spreading and flow splitting of high temperature gas from jet impingement. Two integrated deflectors composed of ablation-resistant layer, thermal insulation layer and multifunctional lattice metal layer are designed and prepared. The transient thermal performance of deflectors under periodical supersonic flame impingement is experimentally studied by employing a kerosene flame jet. A verified 3D numerical model is established to analyze the effects of jet distance, horizontal angel and axial angel of deflector on the flow and thermal distribution characteristics. The experimental results show that the temperature variation of impinged surface with impingement periods trends to stable periodic fluctuation after four periods. Compared to carbon aerogel, the phase change material of LiF as the Layer-2 of deflector decreases the whole temperature level of deflector and especially reduces ablation rate of C/SiC plate by about 40%. The numerical simulation finds that the deflector behaves a good fluid deviating capacity towards the given direction (more than 50% gas flow towards the up section). The gas accelerating effect above the impingement position forms a small region with second peak pressure, temperature and heat transfer coefficient. The increase of horizontal angle or the decrease of axial angle enlarges the highest pressure and temperature on impinged surface due to the more uniform gas distributions deviated by deflector.

源语言英语
主期刊名International Heat Transfer Conference 15
出版商Begell House Inc.
4575-4593
页数19
ISBN(印刷版)9781567004212
DOI
出版状态已出版 - 2014
已对外发布
活动15th International Heat Transfer Conference, 2014 - Kyoto, 日本
期限: 10 8月 201415 8月 2014

丛书

姓名International Heat Transfer Conference
ISSN(印刷版)2377-424X

会议

会议15th International Heat Transfer Conference, 2014
国家/地区日本
Kyoto
时期10/08/1415/08/14

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