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Wind buffeting effects on the Gemini 8m primary mirrors

机译:双子座8m主镜上的风抖效应

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One of the critical design factors for large telescopes is control of primary mirror distortion caused by wind pressure variations. To quantify telescope wind loading effects, the Gemini Observatory has conducted a series of wind tests under actual mountaintop conditions. During commissioning of the southern Gemini Telescope, simultaneous measurements were made of pressures at multiple points on the mirror surface, as well as wind velocity and direction at several locations inside and outside the dome. During the test we varied the dome position relative to the wind, the telescope elevation angle, the position of windscreens in the observing slit, and the size of the openings in the ventilation gates. Five-minute data records were made for 116 different test conditions, with a data-sampling rate of ten per second. These data sets have been processed to provide pressure maps over the surface of the mirror at each time instant. From these pressure maps, the optical surface distortions of the primary mirror have been calculated using finite-element analysis. Data reduction programs have been developed to enhance visualization of the test data and mirror surface distortions. The test results have implications for the design of future large telescopes.
机译:大型望远镜的关键设计因素之一是控制由风压变化引起的主镜畸变。为了量化望远镜的风荷载影响,双子座天文台在实际山顶条件下进行了一系列风向测试。在南部双子座望远镜的调试过程中,同时测量了镜面上多个点的压力以及圆顶室内外几个位置的风速和风向。在测试过程中,我们改变了穹顶相对于风的位置,望远镜的仰角,观察狭缝中挡风玻璃的位置以及通风门的开口尺寸。在116种不同的测试条件下记录了5分钟的数据,数据采样率为每秒10次。这些数据集已经过处理,可以在每个时刻提供反射镜表面的压力图。根据这些压力图,已使用有限元分析计算了主镜的光学表面变形。已经开发了数据缩减程序来增强测试数据的可视化和镜面变形。测试结果对未来大型望远镜的设计有影响。

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