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Design and Analysis of V-Groove Passive Cryogenic Radiators for Space-borne Telescopes Instruments

机译:星载望远镜和仪器用V型槽被动式低温辐射器的设计与分析

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V-groove passive radiators are extremely efficient passive designs to thermally isolate a cryogenic telescope or instrument from warm environments in space,like the Sun,Earth,Moon or Spacecrafts.Compared to traditional multi-layer insulation blankets employed for thermal isolation,the V-Groove radiators provide as much as an order of magnitude improvement.The V-Groove design typically constitutes three low emissivity,lightweight and thin aluminized Mylar/Kapton sheets angled from each other by just few degrees.These successively reflect heat from warmer shields to space via their angular openings,thus minimizing heat flow into the cryogenic system.Thermal analysis of these V-Groove radiators is typically performed by sophisticated thermal software that uses hundreds of thousands of rays to simulate radiative heat flow between successive shields via reflections,which can be very time & resource intensive.We have arrived at very simple closed form equations to predict the thermal behavior of these radiators,that includes their radiative heat transfer factors and temperatures as a function of their basic thermo-optical properties and inter-shield angles.These predictions can be done by hand calculators or in spreadsheet tools like MS-Excel.They compare very well to those from sophisticated computer programs.The ease in the use of these simple equations allow for instantaneous predictions of cryogenic temperatures and their trends for design options and trade studies.A case study of this was utilized for the telescope project that is currently being designed for an all sky spectral survey of the universe.This paper will describe the derivations of these equations,their comparison with computer software results and their applicability for current and future cryogenic space telescope and instrument missions.
机译:V型槽被动散热器是一种非常有效的被动设计,可将低温望远镜或仪器与太阳、地球、月球或航天器等温暖的空间环境进行热隔离。与用于隔热的传统多层隔热毯相比,V型槽散热器提供了多达一个数量级的改进。V型槽设计通常由三块低发射率、轻质、薄的镀铝聚酯薄膜/卡普顿薄膜组成,彼此之间的角度仅为几度。它们通过角形开口将热量从较暖的隔热罩依次反射到空间,从而将进入低温系统的热量降到最低。这些V型槽散热器的热分析通常由复杂的热软件执行,该软件使用数十万条射线通过反射模拟连续屏蔽之间的辐射热流,这可能非常耗时和资源密集。我们已经得出了非常简单的封闭式方程来预测这些散热器的热行为,包括它们的辐射传热系数和温度,作为其基本热光特性和屏蔽层间角度的函数。这些预测可以通过手工计算器或MS Excel等电子表格工具完成。与复杂的计算机程序相比,它们的性能非常好。这些简单方程式的易用性使得可以对低温及其趋势进行即时预测,以供设计选择和权衡研究。这方面的一个案例研究被用于望远镜项目,该项目目前正被设计用于宇宙的全天空光谱调查。本文将描述这些方程的推导,它们与计算机软件结果的比较,以及它们对当前和未来低温空间望远镜和仪器任务的适用性。

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