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Research on Cooling Technology for Large-Aperture Solar Telescope's Primary Mirror

机译:大孔径太阳能望远镜的初级镜冷却技术研究

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The surface temperture of Open Large-Aperture Solar Telescope s primary mirror can vulnerablely be warmed too high by exposure to direct sunlight. If its temperature over the external environment is too high, it is likely to decline the mirror seeing. So generally keeping the surface temperture of primary mirror same as the environment s is very important by cooling technology researched. By using Ansys software to analyze a meniscus-shaped aluminum metal primary mirror with a diameter of 2.5m, and thickness of 4.45cm to gain the primary mirror's temperature distribution in order to verify the feasibility of methods of cooling. Furthermore form a more perfect cooling project. Thus it can provide a technical guidance for Large-Aperture primary mirror's development in the future.
机译:开放式大孔径太阳能望远镜的初级镜子的表面温度可能脆弱地通过暴露于阳光直射而变得过高。如果它对外部环境的温度过高,则可能会拒绝镜子。因此,通过冷却技术研究,通常将初级镜的表面温度与环境S相同,这是非常重要的。通过使用ANSYS软件分析直径为2.5米,厚度为4.45cm的弯月面形铝金属初级镜,以获得初级镜的温度分布,以验证冷却方法的可行性。此外,形成更完美的冷却项目。因此,它可以为未来提供大孔径主镜的发展的技术指导。

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