Volume 30 Issue 9
Sep.  2015
Turn off MathJax
Article Contents
GONG Meng-meng, WANG Jin, LI Yun-ze, WANG Jun. Analysis on thermal control method of satellite in orbit based on self-driven thermostatic valve with sensitive wax[J]. Journal of Aerospace Power, 2015, 30(9): 2271-2277. doi: 10.13224/j.cnki.jasp.2015.09.028
Citation: GONG Meng-meng, WANG Jin, LI Yun-ze, WANG Jun. Analysis on thermal control method of satellite in orbit based on self-driven thermostatic valve with sensitive wax[J]. Journal of Aerospace Power, 2015, 30(9): 2271-2277. doi: 10.13224/j.cnki.jasp.2015.09.028

Analysis on thermal control method of satellite in orbit based on self-driven thermostatic valve with sensitive wax

doi: 10.13224/j.cnki.jasp.2015.09.028
  • Received Date: 2014-06-17
  • Publish Date: 2015-09-28
  • To improve the thermal control adaptability of spacecraft, a satellite single-phase fluid loop thermal control technology based on self-driven thermostatic valve with sensitive wax was presented. Then, two kinds of improved control strategies were proposed. One was the self-driven thermostatic valve with sensitive wax as the controlling object, the other was the combination control with mechanical pump and self-driven thermostatic valve with sensitive wax as the controlling objects. The mathematical model of self-driven thermostatic valve with sensitive wax, heat load, radiator and other components was built by lumped parameter method, temperature dynamic performance of this thermal control system was calculated by numerical simulation method under periodic disturbance of outer heat flux and step disturbance of heat consumption of electrical equipment when a satellite in the orbit. Result shows that,the thermal control strategy with combination of mechanical pump and self-driven thermostatic valve with sensitive wax can realize the precise thermal control of loop, which not only take the advantages of self-driven thermostatic valve to achieve the reliability requirements of the system and reduce energy consumption, but also overcome the disadvantage of self-driven thermostatic valve with sensitive wax, such as temperature limit and steady-state error.

     

  • loading
  • [1]
    闵桂荣,郭舜.航天器热控制[M].北京:科学出版社,1998.
    [2]
    Theodore D,Gajanana S,Birur C.NASA thermal control technologies for robotic spacecraft[J].Applied Thermal Engineering,2003,23(9):1055-1065.
    [3]
    徐向华,程雪涛,梁新刚.载人航天器主动热控制系统流体回路的优化设计[J].宇航学报,2011,32(10):2285-2293. XU Xianghua,CHENG Xuetao,LIANG Xingang.Design and optimization for fluid loops of active thermal control system in manned spacecraft[J].Journal of Astronautics,2011,32(10):2285-2293.(in Chinese)
    [4]
    Alan G L,Razi N M.Dynamic performance of conventional and electrically activated engine thermostats[R].Philadelphia,Pennsylvania:ASME 2001 Internal Combustion Engine (ICE) Spring Technical Conference,2001.
    [5]
    Zou X,Jordan J,Shillor M.A dynamic model for a thermostat[J].Journal of Engineering Mathematic,1999,36(4):291-310.
    [6]
    Yang B Z,Lin Q.Latchable phase-change actuators for micro-flow control applications[R].Orlando,FL:International Mechanical Engineering Conference and Exhibition,2005.
    [7]
    Yang B Z,Lin Q.A latchable microvalve using phase change of paraffin wax[J].Sensors and Actuators,2007,134(1):194-200.
    [8]
    杜兆年,史风霞,范宗良,等.温控阀的分析研究[J].阀门,2004(1):14-16. DU Zhaonian,SHI Fengxia,FAN Zongliang,et al.The analysis of thermal control valve based on paraffin wax[J]. Valve,2004(1):14-16.(in Chinese)
    [9]
    陈兵芽,刘莹,孙长存.石蜡的热膨胀驱动特性[J].机械工程材料,2008,32(7):60-63. CHEN Bingya,LIU Ying,SUN Changcun.Thermal expansion actuated characteristics of paraffin[J].Materials for Mechanical Engineering,2008,32(7):60-63.(in Chinese)
    [10]
    李爽,赵华,赵加宁.变室温供暖房间动态特性模拟[J].天津大学学报,2011,44(7):613-617. LI Shuang,ZHAO Hua,ZHAO Jianing.Dynamic characteristics simulation of variable temperature heating room[J].Journal of Tianjin University,2011,44(7):613-617.(in Chinese)
    [11]
    宁献文,张加迅.基于泵变频调速的航天器热控制技术[J].中国空间科学技术,2011,4(2):47-51. NING Xianwen,ZHANG Jiaxun.Spacecraft thermal control technology based on variable frequency pump[J].Chinese Space Science and technology,2011,4(2):47-51.(in Chinese)
    [12]
    刘东晓,李运泽,李淼,等.微小航天器单相流体回路自主热控地面实验研究[J].宇航学报,2012,33(3):392-398. LIU Dongxiao,LI Yunze,LI Miao,et al.Ground experimental research on autonomous thermal control of single-phase fluid loop for micro or mini spacecraft[J].Journal of Astronautics,2012,33(3):392-398.(in Chinese)
    [13]
    Li Y Z,Kim M L,Wang J.Analysis and control of the equivalent physical simulator for nano-satellite space radiator[J].IEEE/ASME Transactions on Mechatronics,2010,15(1):79-87.
    [14]
    刘佳,李运泽,刘东晓,等.卫星MEMS热控系统的动态特性及自主控制策略[J].航空学报,2010,31(4):671-678. LIU Jia,LI Yunze,LIU Dongxiao,et al.Satellite MEMS thermal control system dynamic characteristics and autonomous thermal control strategy[J].Acta Aeronautica et Astronautica Sinica,2010,31(4):671-678.(in Chinese)
    [15]
    李运泽,魏传锋,袁领双,等.卫星热控系统的动态建模与仿真[J].北京航空航天大学学报,2005,31(3):372-374. LI Yunze,WEI Chuanfeng,YUAN Lingshuang,et al.Dynamical modeling and simulation of satellite thermal control system[J].Journal of Beijing University of Aeronautics and Astronautics,2005,31(3):372-374.(in Chinese)
    [16]
    李运泽,宁献文,王晓明,等.纳卫星轨道热环境仿真分析[J].系统仿真学报,2007,19(14):3166-3175. LI Yunze,NING Xianwen,WANG Xiaoming,et al.Simulation analysis of nano-satellite's orbital thermal environment[J].Journal of System Simulation,2007,19(14):3166-3175.(in Chinese)
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (1064) PDF downloads(533) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return