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Study on Thermal Analysis of Main Mirror in Space Solar Telescope

机译:空间太阳望远镜主镜热分析研究

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The proposed Chinese Space Solar Telescope (SST) is the first large aperture space telescope in China designed to observe the sun. With an effective aperture of Φ1m, the primary mirror faces the sun directly, which receives more than 1000W heat that will lead to unacceptable thermal distortion in such severe thermal condition. Therefore, the temperature field of SST, which is changing with its orbital position, is critical in its design, hi this paper, an analysis of the thermal flux in the SST is presented firstly. Further more, the heat flux of orbit is calculated with the thermal softerware NEVADA (Net Energy Verification And Determination Analyzer) according to the orbit parameters of SST. The thermal design software SINDA/G (System Improved Numerical Differencing Analyzer/Gaski), the radiation analysis software NEVADA and the finite element analysis software MSC.Patran are used to simulate the temperature field of the SST. In the end, the temperature distribution of the primary mirror is calculated. The temperature level of the primary mirror indicates that the system can achieve high spatial resolution with 0.1"~0.15". It also means that the thermal control design is effective. The optical requirements to the SST thermal control are met. The thoughts and methods of the thermal analysis are also useful for similar optical telescopes designed for solar observation.
机译:拟议中的中国太空太阳望远镜(SST)是中国第一台旨在观测太阳的大口径太空望远镜。主反射镜的有效孔径为Φ1m,直接面对太阳,该太阳接收的热量超过1000W,在如此恶劣的热条件下会导致不可接受的热变形。因此,随其轨道位置而变化的SST温度场在其设计中至关重要。在本文中,首先对SST中的热通量进行了分析。此外,根据SST的轨道参数,使用热软件NEVADA(净能量验证和确定分析器)计算轨道的热通量。使用热设计软件SINDA / G(系统改进的数值差分分析仪/ Gaski),辐射分析软件NEVADA和有限元分析软件MSC.Patran来模拟SST的温度场。最后,计算主镜的温度分布。主镜的温度水平表明系统可以达到0.1“〜0.15”的高空间分辨率。这也意味着热控制设计是有效的。满足SST热控制的光学要求。热分析的思想和方法对于设计用于太阳观测的类似光学望远镜也很有用。

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