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Heat-stop structure design with high cooling efficiency for large ground-based solar telescope

机译:大型地面太阳望远镜的散热效率高的挡热结构设计

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摘要

A heat-stop is one of the most important thermal control devices for a large ground-based solar telescope. For controlling the internal seeing effect, the temperature difference between the heat-stop and the ambient environment needs to be reduced, and a heat-stop with high cooling efficiency is required. In this paper, a novel design concept for the heat-stop, in which a multichannel loop cooling system is utilized to obtain higher cooling efficiency, is proposed. To validate the design, we analyze and compare the cooling efficiency for the multichannel and existing single-channel loop cooling system under the same conditions. Comparative results show that the new design obviously enhances the cooling efficiency of the heat-stop, and the novel design based on the multichannel loop cooling system is obviously better than the existing design by increasing the thermal transfer coefficient. (C) 2015 Optical Society of America
机译:对于大型地面太阳望远镜来说,挡热板是最重要的热控制设备之一。为了控制内部的透视效果,需要减小挡热板与周围环境之间的温度差,并且需要具有高冷却效率的挡热板。在本文中,提出了一种新颖的热停止设计概念,其中利用多通道回路冷却系统来获得更高的冷却效率。为了验证设计,我们分析并比较了在相同条件下多通道和现有单通道环路冷却系统的冷却效率。比较结果表明,新设计明显提高了挡热板的冷却效率,基于多通道回路冷却系统的新设计通过增加热传递系数,明显优于现有设计。 (C)2015年美国眼镜学会

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