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Structural design considerations for an 8-m space telescope

机译:8米太空望远镜的结构设计注意事项

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NASA's upcoming ARES V launch vehicle, with its' immense payload capacities (both volume and mass) has opened the possibilities for a whole new paradigm of space observatories. It becomes practical to consider a monolith mirror of sufficient size to permit significant scientific advantages, both in collection area and smoothness or figure at a reasonable price. The technologies and engineering to manufacture and test 8 meter class monoliths is mature, with nearly a dozen of such mirrors already in operation around the world. This paper will discuss the design requirements to adapt an 8m meniscus mirror into a Space Telescope System, both launch and operational considerations are included. With objects this massive and structurally sensitive, the mirror design must include all stages of the process. Based upon the experiences of the Hubble Space Telescope, testing and verification at both component and integrated system levels are considered vital to mission success. To this end, two different component level test methods for gravity sag (the so call zero- gravity simulation or test mount) are proposed, with one of these methods suitable for the full up system level testing as well.
机译:NASA即将推出的ARES V运载火箭具有巨大的有效载荷能力(无论是体积还是质量),都为全新的空间天文台范例打开了可能性。考虑具有足够大小的整体镜以在收集面积和平滑度或图形上以合理的价格获得显着的科学优势成为现实。制造和测试8米级整料的技术和工程已经成熟,在世界范围内已经有近十个这样的镜子投入使用。本文将讨论将8m弯月面镜改成太空望远镜系统的设计要求,包括发射和操作方面的考虑。对于具有如此庞大且结构敏感的物体,镜面设计必须包括过程的所有阶段。根据哈勃太空望远镜的经验,在组件和集成系统级别上的测试和验证被认为对任务成功至关重要。为此,提出了两种用于重力下垂的组件级测试方法(所谓的零重力模拟或测试安装),其中一种方法也适用于完整的系统级测试。

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