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Structural Optimization of the Retractable Dome for Four Meter Telescope (FMT)

机译:四米望远镜可伸缩圆顶的结构优化(FMT)

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摘要

Dome seeing degrades the image quality of ground-based telescopes. To achieve dome seeing of the Four Meter Telescope (FMT) less than 0.5 arcsec, structural optimizations based on computational fluid dynamics (CFD) simulation were proposed. The results of the simulation showed that dome seeing of FMT was 0.42 arcsec, which was mainly caused by the slope angle of the dome when the slope angle was 15 degrees and the wind speed was 10 m/s. Furthermore, the lower the air speed was, the less dome seeing would be. Wind tunnel tests (WT) with a 1:120 scaled model of the retractable dome and FMT indicated that the calculated deviations of the CFD simulation used in this paper were less than 20% and the same variations of the refractive index derived from the WT would be a convincing argument for the validity of the simulations. Thus, the optimization of the retractable dome was reliable and the method expressed in this paper provided a reference for the design of next generation of ground-based telescope dome.
机译:圆顶看,降低地面望远镜的图像质量。为了实现小于0.5弧度望远镜(FMT)的圆顶,提出了基于计算流体动力学(CFD)仿真的结构优化。模拟结果表明,圆顶看FMT为0.42弧度,主要由朝向角度为15度并且风速为10米/秒时由圆顶的斜角引起。此外,空气速度越低,圆顶的观察越少。带有1:120缩放模型的风洞测试(WT)可伸缩圆顶和FMT表示本文中使用的CFD模拟的计算偏差小于20%,并且源自WT的折射率相同的变化对模拟有效性是一个令人信服的论点。因此,可伸缩圆顶的优化是可靠的并且本文中表达的方法提供了下一代地面望远镜圆顶的设计参考。

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