New website getting online, testing
    • 摘要: 随着天文科学日新月异的发展和对性能越来越高的天文望远镜的迫切需求,目前,国际上正在积极建设口径20 m~40 m量级的极大口径光学红外望远镜。这些望远镜为了实现更大口径,也面临着巨大的技术挑战。其中,为使望远镜达到光学设计要求,需要创新解决方案来满足足够的负荷分担要求。本文简单介绍了国际上极大望远镜主桁架结构及关键结构件的多种设计方法,分析了各种方案的优缺点,提出了一种新的轻量化钣金焊接结构的30 m中国未来巨型望远镜方案,并在此基础上进行了大量的有限元建模、优化和仿真分析。分析结果显示,望远镜指向天顶时,第一阶模态频率为2.3 Hz,结构最大变形为3.8 mm;而望远镜指向水平方向时,第一阶模态频率减小为2.1 Hz,结构最大变形为2.9 mm,满足了望远镜的相关技术要求,为我国未来巨型望远镜的研制提供了技术参考。

       

      Abstract: In recent years, with the fast development of astronomical science and higher requirements for astronomical telescope's performance, the ground-based extremely large astronomical optical telescopes with aperture 20 m~40 m in diameter are being actively studied and constructed internationally. With the increase of the telescope aperture, these telescopes should face even greater challenges. In order to make them meet their optical design requirements, new solutions are needed to provide adequate load sharing. In this paper, several design methods of the main structures and key components of the extremely large telescopes are summarized, the advantages and disadvantages of various schemes are analyzed, a lightweight sheet metal welding structure for the 30 m Chinese Future Giant Telescope (CFGT) is put forward, and the finite element model design and analysis are carried out. The results show that when the telescope points to the zenith, the first modal frequency is 2.3 Hz and the maximum deformation of the structure is 3.8 mm. While the telescope points in the horizontal direction, the first modal frequency is reduced to 2.1 Hz and the maximum deformation of the structure is 2.9 mm, which meets the technical requirements of CFGT. The design provides a technical reference for the development of extremely large telescopes in China in the future.