首页 | 本学科首页   官方微博 | 高级检索  
     检索      

折叠状航天器太阳电池阵在轨热分析(Ⅰ)——计算模型
引用本文:程惠尔,杨卫华,施金苗,方国隆.折叠状航天器太阳电池阵在轨热分析(Ⅰ)——计算模型[J].宇航学报,2002,23(1):12-16.
作者姓名:程惠尔  杨卫华  施金苗  方国隆
作者单位:1. 上海交通大学动力与能源工程学院,上海,200030
2. 中国航天科技集团上海航天技术研究院,上海,200032
摘    要:将太阳电池板蜂窝芯子、面板和硅电池片中发生的辐射-传导复合传热过程等效为一个无内热源的三维瞬态热传导问题。根据电池板的材料、尺寸及结构形态导出太阳电池板的三维等效导热系数。针对任意两相邻电池板表面间的热辐射交换规律,构造适用于这表面内节点温度的离散方程系数。研究折叠状态太阳电池阵边界节点的热特点时,仔细考虑了地球红外辐照、地球的太阳反照、太阳辐射加热、航天器舱体几何遮挡、深冷环境散热、飞行轨道高度及航天器在太阳-地球系中不同位置等造成的影响。利用本文给出的方程,可以求出展开前在轨折叠状太阳电池阵三瞬态不稳定温度场。

关 键 词:航天器  折叠状太阳电池阵  计算模型  温度场  在轨热分析
文章编号:1000-1328(2002)01-0012-05
修稿时间:2001年4月25日

Thermal analysis for folded solar array of spacecraft on orbit(Ⅰ)——calculation model
CHENG Hui er ,YANG Wei hua ,SHI Jing miao ,FANG Guo long.Thermal analysis for folded solar array of spacecraft on orbit(Ⅰ)——calculation model[J].Journal of Astronautics,2002,23(1):12-16.
Authors:CHENG Hui er  YANG Wei hua  SHI Jing miao  FANG Guo long
Institution:CHENG Hui er 1,YANG Wei hua 1,SHI Jing miao 2,FANG Guo long 2
Abstract:The combined radiation conduction taking place in solar panels is treated as a three dimensional transient conduction.The equivalent conductivities in three directions are obtained by means of the material,size,construction of solar panels.According to the radiative characteristics between two adjacent surfaces of the solar array,the discrete equation coefficients of the nodes between them are obtained.When the thermal characteristics of boundary nodes in the folded solar panels is studied,some influence factors are considered carefully such as the earth infrared radiation,the solar radiation,the earth reflection for the sunlight,the spacecraft cabin,the heat loss of solar panels in space deep cold environment,the orbit altitude and spacecraft location in the system of sun earth.The transient temperature distribution of the solar array is obtained by the given model before its spreading.
Keywords:Spacecraft  Folded solar array  Calculation model  Temperature filed
本文献已被 CNKI 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号