用于发动机羽流试验研究的液氦热沉设计
Liquid helium heat sink design for experimental study of engine's plume and vacuum effects
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摘要: 超低温大型卧式热沉采用液氦制冷,将在国内实现热沉表面温度低于10K,主要用于航天发动机羽流效应试验,同时兼顾卫星等热真空试验.热沉主体结构为卧式圆筒型,为减小热损失,液氦热沉去掉了骨架,外部装有液氮热沉,两者采用一体化设计,液氮热沉既做液氦热沉的防辐射屏,又做液氦热沉的支撑.为增大抽速,舱体封头端设计了可拆卸的羽流吸附泵.羽流试验时液氦热沉、羽流吸附泵通液氦制冷,液氮热沉通液氮制冷,各部分热沉单独供液.对此大型热沉进行了方案设计、参数计算,对热沉预冷及稳态工况时的液氮、液氦消耗量进行了估算,分析了羽流试验时热沉抽气速率随试验工质温度的变化关系,得出液氦热沉对氮气的抽气速率可以达到107L/s量级.Abstract: The large horizontal ultra-low temperature heat sink,based on liquid helium cooling,could firstly realize heat sink surface temperature below 10K in China,and is mainly applied to spacecraft-thruster vacuum plume effects' experimental study and the thermal vacuum test of satellite simultaneously.In order to minimize heat loss,the main structure of heat sink frame was removed,and the liquid helium heat sink was enclosed by a liquid nitrogen heat sink.Both of them were designed integrally so that the liquid nitrogen heat sink is not only the anti-radiation panel for liquid helium heat sink,but also the frame brace.To increase the pumping speed of heat sink,a plume adsorption pump was developed and mounted on the end of the vacuum chamber.At the experiment of vacuum plume,vacuum plume adsorption pump and liquid nitrogen heat sink were cooled by liquid helium and liquid nitrogen,respectively.The analysis was conducted for key parameters of heat sink,such as estimating the liquid nitrogen,liquid helium consumption in pre-cooling process and steady-state condition,and comparing the relationship between pumping speed of heat sink and working fluid temperature.The results show that pumping speed of the heat sink for nitrogen can reach 107L/s magnitude.
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Key words:
- vacuum /
- plume effects /
- thermal vacuum test /
- heat sink /
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[1] 黄本诚.空间模拟器设计[M].北京:宇航出版社,1994. [2] 黄本诚,马有礼.航天器空间环境试验技术[M].北京:国防工业出版社,2002. [3] 于涛,刘敏,邹定忠.航天器空间环境模拟器热沉均匀性分析[J].中国空间科学技术,2006(6):37-41. YU Tao,LIU Min,ZOU Dingzhong.Thermal uniformity analysis for heat sink of space simulator[J].Chinese Space Science and Technology,2006(6):37-41.(in Chinese) [4] 龚吉君.KFT空间环模设备热沉的设计与研制[J].低温工程,1989(51):18-27. GONG Jijun.Design and research on heat sink of space environment simulator[J].Cryogenic Engineer,1989(51):18-27.(in Chinese) [5] 单巍巍,丁文静,刘敏,等.气氦热沉结构优化设计[J].航天环境工程,2009,26(增刊):100-102. SHAN Weiwei,DING Wenjing,LIU Min,et al.Gas helium heat sink structure optimal design[J].Spacecraft Environment Engineering,2009,26(Supple):100-102.(in Chinese) [6] 李科,冉书能,贾春燕,等.用氦制冷机测量纯铜低温热导率[J].物理试验,2009,29(10):27-30. LI Ke,DING Wenjing,LIU Min,et al.Measurement of low temperature thermal conductivity of pure Cu with helium refrigerator[J].Physics Experimentation,2009,29(10):27-30.(in Chinese) [7] 阎守胜,陆果.低温物理试验的原理与方法[M].北京:科学出版社,1985. [8] 景加荣,齐晓军,彭光东.空间环境模拟器20K液氦热沉系统设计[J].航天环境工程,2009,26(增刊):96-99. JING Jiarong,QI Xiaojun,PENG Guangdong.Study on 20K helium-driven heat sink system of space environment simulator[J].Spacecraft Environment Engineering,2009,26(Supple):96-99.(in Chinese) [9] 陈国邦,包锐,黄永华.低温工程技术数据[M].北京:国防工业出版社.2005. [10] 陈国邦,黄永华,包锐.低温流体热物理性质[M].北京:国防工业出版社.2006. [11] 黄本诚,童靖宇.空间环境工程学[M].北京:中国科学技术出版社.2010. [12] 黄本诚,陈金明.空间真空环境与真空技术[M].北京:国防工业出版社. -
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