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New technologies and new performances of the JCMT radio-telescope: a preliminary design study

机译:JCMT射电望远镜的新技术和新性能:初步设计研究

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With a diameter of 15m the James Clerk Maxwell Telescope (JCMT) is the largest astronomical telescope in the worlddesigned specifically to operate in the submillimeter wavelength region of the spectrum. It is situated close to the summitof Mauna Kea, Hawaii, at an altitude of 4092m. Its primary reflector currently consists of a steel geodesic supportingstructure and pressed aluminium panels on a passive mount. The major issues of the present reflector are its thermalstability and its panels deterioration.A preliminary design study for the replacement of the JCMT antenna dish is here presented. The requested shape errorfor the new reflector is &20μm RMS.The proposed solution is based on a semi-monocoque backing structure made of CFRP and on high precisionelectroformed panels. The choice of CFRP for the backing structure allows indeed to improve the antenna performancein terms of both stiffness and thermal stability, so that the required surface accuracy of the primary can be achieved evenby adopting a passive panels system. Moreover thanks to CFRP, a considerable weight reduction of the elevationstructure can be attained.The performance of the proposed solution for the JCMT antenna has been investigated through FE analyses and theassessed deformation of the structure under different loading cases has been taken into account for subsequent errorbudgeting.Results show that the proposed solution is in line with the requested performance.With this new backing structure, the JCMT would have the largest CFRP reflector ever built.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:詹姆斯·克莱克·麦克斯韦望远镜(JCMT)的直径为15m,是世界上最大的天文望远镜,专为在光谱的亚毫米波长范围内工作而设计。它靠近夏威夷的莫纳克亚山的山顶,海拔4092m。它的主要反射器目前由钢制测地线支撑结构和被动安装座上的压制铝面板组成。本反射器的主要问题是其热稳定性和面板的劣化。这里提出了用于替换JCMT天线盘的初步设计研究。新反射器要求的形状误差小于20μmRMS。建议的解决方案基于CFRP制成的半硬壳支撑结构和高精度电铸面板。为支撑结构选择CFRP确实可以提高天线在刚性和热稳定性方面的性能,因此,即使采用无源面板系统,也可以实现初级天线所需的表面精度。此外,借助CFRP,可以显着降低立面结构的重量。通过有限元分析研究了建议的JCMT天线解决方案的性能,并考虑了结构在不同载荷情况下的变形评估,以便进行后续的误差预算。结果表明,提出的解决方案符合要求的性能。有了这种新的支撑结构,JCMT将拥有迄今为止有史以来最大的CFRP反射器。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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