杜晨慧.高超声速飞行器综合热管理及关键技术研究进展[J].装备环境工程,2023,20(1):43-51. DU Chen-hui.Research Progress on Integrated Thermal Management and Key Technology of Hypersonic Vehicles[J].Equipment Environmental Engineering,2023,20(1):43-51.
高超声速飞行器综合热管理及关键技术研究进展
Research Progress on Integrated Thermal Management and Key Technology of Hypersonic Vehicles
  
DOI:10.7643/issn.1672-9242.2023.01.007
中文关键词:  高超声速飞行器  热防护  舱内热管理  综合热管理中图分类号:V221 文献标识码:A 文章编号:1672-9242(2023)01-0043-09
英文关键词:hypersonic vehicles  thermal protection  thermal management in cabin  integrated thermal management
基金项目:
作者单位
杜晨慧 中国航空研究院,北京 100291;中国航空研究院研究生院,江苏 扬州 225002 
AuthorInstitution
DU Chen-hui Chinese Aeronautical Establishment, Beijing 100291, China;Graduate School, Chinese Aeronautical Establishment, Jiangsu Yangzhou, 225002, China 
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中文摘要:
      从高超声速飞行器面临的内外热环境特点、热防护与舱内热管理的需求入手,面对热源增大、热沉受限的现状,提出需对高超声速飞行器舱外热防护与舱内热管理开展综合热管理与一体化设计,并分别针对热防护、舱内热管理以及综合热管理现有技术手段、应用特点以及发展趋势等方面开展综合论述与分析。在此基础上,对美国已经提出的一系列综合热管理计划的发展状况与关键技术点进行了综合论述。最后,从先进热管理单点技术、高超声速飞行器内外一体化耦合设计以及综合热管理系统快速建模与分析3方面分析了高超声速飞行器综合热管理关键技术。
英文摘要:
      With the development to high altitude, high speed, and long endurance of hypersonic vehicles, the external and inner thermal environment it faced has become more severe, which has brought great challenges to the current thermal protection and thermal management. Focused on the hypersonic vehicles’ internal and external thermal environment and the requirements of thermal protection and thermal management, and to deal with the status of increasing heat load and limited heat sink, the method of integrated design and management for thermal protection and thermal management in cabin was proposed in this work. Then, comprehensive discussion and analysis on thermal protection and thermal management were carried out, which included current technological means, applications and development trends. Based on these, the series of plans about the integrated thermal management in USA were summarized. At last, three key technologies of integrated thermal management for hypersonic vehicles were analyzed, including advanced thermal management technologies, integrated internal and external coupling design and rapid modeling and analysis of integrated thermal management systems.
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