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一种基于热管温控技术的红外抑制方法 被引量:2

Infrared Suppression Approach Based on Heat Pipe Temperature Control Technology
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摘要 针对高温物体的红外抑制方法,采用具有高导热特性的热管模块进行研究。理论分析了热管模块的技术特点,建立了热管模块的热传导模型,计算了不同功率的热管模块实现红外抑制的效能,搭建了热管模块原理验证试验模型,实际测试了热管模块的红外抑制效果。测试结果表明,辐射温度为140℃的物体经热管导热散热后辐射温度仅为65℃。 Aiming at the method for infrared suppression of the high temperature object,the heat pipe with the high thermal conductivity is studied.The technology characteristics of heat pipe are analyzed theoretically,and the thermal conductivity model of heat pipe module is established.The performance of the infrared suppres sion of the heat pipes with different power is calculated systematically.The experimental model of the theory of the heat pipe module is established,and the infrared suppression effect of heat pipe is tested.The results show that the radiation temperature of the object is reduced from 140 ℃ to 65 ℃ when the heat pipe is used.
出处 《光电技术应用》 2011年第6期22-24,38,共4页 Electro-Optic Technology Application
关键词 红外辐射 红外抑制 热管 infrared radiation infrared suppression heat pipe
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  • 1莫才颂,李权.热管传热及散热分析[J].茂名学院学报,2006,16(3):31-34. 被引量:6
  • 2魏新宇,李树勋,吴奇.热管技术的应用展望[J].甘肃冶金,2006,28(3):98-99. 被引量:8
  • 3康建英.热管技术简介[J].中国特种设备安全,2006,22(9):65-65. 被引量:2
  • 4Supcoe R F.Blue-gray low infrared emitting coating[M].US Pat.4311623A1,1982.
  • 5Shan Y,Zhou Y,Cao Y,et al.Preparation and infrared e missivity study of collagen-g-PMMA/In2O3 nanocompos.ite[J].Mater.Lett.2004,58(10):1655-1660.
  • 6唐晋发,顾培夫,刘旭,等.现代光学薄膜技术[M].杭州:浙江大学出版社,2007.
  • 7F P Incropera,D P De Witt,T L Bergman,et al.传热和传质的基本原理.6版.葛新石,叶宏.北京:化学工业出版社,2007.
  • 8李时娟,杨彬.新型平板热管传热性能的实验研究[C] //.第十一届全国热管会议论文集,2008:288-292.
  • 9崔丽萍.柔性热管的传热试验研究与分析[C] //第十一届伞国热管会议论文集,2008:293-298.
  • 10Li Jin,Ye Hong,Wei Mengliu.The suppression of the atmospheric win dow band emission using photonic crystals,proceedings of the Inaugural US-EU-China Thermophysics Conference(ASME),2009 (5):28-30,Beijing,China.

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  • 1张亚平,余小玲,冯全科.热管热性能的实验研究[J].西安科技大学学报,2007,27(2):187-189. 被引量:14
  • 2周俊杰,徐国权,张华,等.Fluent工程技术与实例分析[M].北京:中国水利水电出版社,2011.
  • 3LIPS Stéphane,LEFèVRE Frédéric,BONJOUR Jocelyn. Nucleate Boiling in a Flat Grooved Heat Pipe[J].Interna-tional Journal of Thermal Sciences,2009,(07):1273-1278.
  • 4VASILIEV L L. Micro and Miniature Heat Pipes-Electronic Component Coolers[J].{H}Applied Tnermal Engineering,2008.266-273.
  • 5KEMME J E. Heat Pipe Compatibility Experiments[R].Los Alamos Scientific Lab,LA-3585-MS,1966.
  • 6KEMME J E. Heat Pipe Design Considerations[R].Los Al-amos Scientific Lab,LA-4221-MS,1969.
  • 7CHEN Yongping,ZHANG Chengbin,SHI Mingheng. Study on Flow and Heat Transfer Characteristics of Heat Pipewith Axial"Ω”Shaped Microgrooves[J].{H}International Journal of Heat and Mass Transfer,2009.636-643.
  • 8SHIMURA Takahiro,SHO Hitoshi,NAKAMURA Yoshio. The Aluminum Flat Heat Pipe Using Cyclopentane as Working Fluid[A].2002.
  • 9ABBOTT Derek. Keeping the Energy Debate Clean:How Do We Supply the World ’s Energy Needs[A].2010.42-66.
  • 10邓月超;赵耀华;刁彦华.新型平板热管式太阳能集热器的数值模拟研究[A],20111-7.

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