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Three Canted Radiator Panels to Provide Adequate Cooling for Instruments on Slewing Spacecraft in LEO

机译:三个倾斜的散热器面板可为LEO旋转航天器上的仪器提供足够的冷却

摘要

Certain free-flying spacecraft in low Earth orbit (LEO) or payloads on the International Space Station (ISS) are required to slew to point the telescopes at targets. Instrument detectors and electronics require cooling. Traditionally a planar thermal radiator is used. The temperature of such a radiator varies significantly when the spacecraft slews because its view factors to space vary significantly. Also for payloads on the ISS, solar impingement on the radiator is possible. These thermal adversities could lead to inadequate cooling for the instrument. This paper presents a novel thermal design concept that utilizes three canted radiator panels to mitigate this problem. It increases the overall radiator view factor to cold space and reduces the overall solar or albedo flux absorbed per unit area of the radiator.
机译:某些低地球轨道(LEO)或国际空间站(ISS)上的有效载荷的自由飞行航天器需要摆转以将望远镜对准目标。仪器探测器和电子设备需要冷却。传统上,使用平面散热器。当航天器回转时,这种散热器的温度会发生很大变化,因为其对空间的观察因素会发生很大变化。同样,对于国际空间站上的有效载荷,可能会在散热器上照射太阳。这些热逆境可能导致仪器冷却不足。本文提出了一种新颖的热设计概念,该概念利用三个倾斜的散热器面板来缓解此问题。它增加了散热器对寒冷空间的总视野因子,并减少了散热器每单位面积吸收的总太阳或反照率通量。

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    Choi Michael K.;

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  • 年度 2012
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