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低空飞艇太阳辐射热环境分析 被引量:2

Analysis of thermal environment of low-altitude airships
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摘要 结合低空气象条件,详细分析了飞艇的热环境情况和影响因素,并运用计算流体力学软件FLUENT及其提供的接口编制的并行的UDF程序,对标准飞艇模型进行了数值模拟计算,获得了全天时飞艇内部、蒙皮表面的最高温度、平均温度等分布情况。该方法具有较高的精度,对于指导飞艇材料的选取,以及推广到平流层飞艇的热环境分析具有指导作用。 The thermal environment and influencing factors of low-altitude airships are analyzed in detail by combining the weather con-ditions of low altitude with characters of low-altitude airships.A numerical simulation approach is used to compute a airship model which uses computational fluid dynamics(CFD) software FLUENT and compiling parallel UDF programs with its providing interfaces.The results predict the distribution of temperature including the highest temperature and average temperature of airship in boat and shin surface.This method has higher accuracy,the results well conduct the material selection used in airship shin and research the thermal environment in the stratospheric airship.
出处 《计算机工程与设计》 CSCD 北大核心 2011年第4期1474-1477,1483,共5页 Computer Engineering and Design
关键词 飞艇 热环境 辐射 传热 NAVIER-STOKES方程 airship thermal-environment radiation heat transfer Navier-Stokes equations
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参考文献10

  • 1Anthony C,James L D.High-altitude,long-endurance airships forcoastal surveillance [C]. USA: National Aeronautics and SpaceAdministration,2005:213-427.
  • 2Joseph F G,Henry S W, Mark J L.A design comparison of atmos-pheric flight vehicles for the exploration of titan[C].USA:Na-tional Aeronautics and Space Administration,2005:6235.
  • 3Lee Yung Gyo,Kim Dong Min,Yeom Chart I-long.Developmentof Korean high altitude platform systems[J].Intemational Jour-nal of Wireless Information Networks,2006,13(12):31-42.
  • 4Luque A,Hegendus S.Handbook ofphotovoltaic science and en-gineering[M].John Wiley and Sons Ltd,2003.
  • 5Charles W Vogt.Performance capability of a damaged lighter-than-air vehicle operating in the near space regime [D]. Ohio,USA:Air Force Institute of Technology,2006.
  • 6Hong Jun Ran,Raid Thoms.A comprehensive global model ofbroadband directsolar radiation for solar cell simulation [C].AIAA,2007.
  • 7王晓亮,单雪雄.平流层飞艇空气动力估算[J].力学季刊,2006,27(2):295-304. 被引量:21
  • 8方贤德,王伟志,李小建.平流层飞艇热仿真初步探讨[J].航天返回与遥感,2007,28(2):5-9. 被引量:48
  • 9施红,宋保银,姚秋萍.平流层飞艇热性能分析软件开发[J].计算机仿真,2008,25(11):65-68. 被引量:1
  • 10姚伟,李勇,王文隽,郑威.平流层飞艇热力学模型和上升过程仿真分析[J].宇航学报,2007,28(3):603-607. 被引量:39

二级参考文献31

  • 1姚伟,李勇,王文隽,郑威.平流层飞艇热力学模型和上升过程仿真分析[J].宇航学报,2007,28(3):603-607. 被引量:39
  • 2焦志强,洪冠新,杨超.系缆气球的气动力估算和配平计算[J].北京航空航天大学学报,2004,30(5):419-424. 被引量:6
  • 3康梅娟,郭状先.基于Visual C++的ADO数据库编程[J].福建电脑,2006,22(9):190-190. 被引量:1
  • 4S R Runnels, M S Smith and D A Fairbrother. High - altitude bal- loon thermal trajectory analysis database system [ R ]. AIAA 2003 -6821.
  • 5D A Grant and L R James. Dynamic analysis of an ascending high altitude tethered balloon system [ R ]. AIAA 96 - 0578.
  • 6Lee Yung - Gyo, Kim Dong - Min and Yeom Chan - Hong. Devel- opment of Korean high altitude platform systems [ J ]. International Journal of Wireless Information Networks. 2005.
  • 7Kenya Harada, Kunihisa Eguchi, Masaaki Sano and Shuichi Sasa. Experimental study of thermal modeling for stratospheric platform airships[R]. AIAA 2003 -6833.
  • 8[1]Colozza A,Dolce J L.High-Altitude.Long-endurance airships for coastal surveillance.NASA/TM-2005-213427,2005
  • 9[2]Colozza A.Initial Feasibility Assessment of a High Altitude Long Endurance Airship.NASA/CR-2003-212724,2003
  • 10[3]Harada K,Eguchi K,Sano M,et al.Experimental Study of Thermal Modeling for Stratospheric Platform Airships.AIAA 2003-6833

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