低温热开关技术在“亮眼”传感器载荷双焦平面概念中的应用

D. Glaister, D. Curran, V. Mahajan, M. Stoyanof
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引用次数: 4

摘要

通过使用低温热开关技术,飞行演示系统(FDS)的“亮眼”(BE)政府基线有效载荷配置已经得到增强,可以在有无运行低温制冷机的情况下提供红外传感能力。本文概述了基准冷却配置,评估了候选热交换器设计的优点和缺点,并描述了利用吸附床气源进行验证演示的要求和配置。主红外焦平面阵列(IRFPA)由一对低温制冷机在60 K下冷却,而位于同一位置的在更高温度下工作的第二红外焦平面组件由低温散热器在135 K下被动冷却。该配置依赖于低温开关来热隔离两个冷却系统。低温热开关还应用于目标飞行系统,以减少冗余制冷机系统的热负荷寄生。几种热敏开关设计(包括气隙开关,远程存储或密封气体,和二极管热管)进行了评估。开发了利用气隙吸收开关的验证演示程序的配置和要求。这些要求也流入了现有的低温柔性二极管热管技术项目。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of cryogenic thermal switch technology to dual focal plane concept for Brilliant Eyes sensor payload
Through the use of cryogenic thermal switch technology, the Brilliant Eyes (BE) government baseline payload configuration for the Flight Demonstration System (FDS) has been enhanced to provide infrared sensing capability with and without a running cryogenic refrigerator. This paper presents a summary of the baseline cooling configurations, assesses the advantages and disadvantages of the candidate thermal switch designs, and describes the requirements and configuration for a validation demonstration utilizing a sorption bed gas source. The primary infrared focal plane array (IRFPA) is cooled by a pair of cryogenic refrigerators at 60 K and a co-located second infrared focal plane assembly operating at a higher temperature is passively cooled by a cryogenic radiator at 135 K. The configuration relies on a cryogenic switch to thermally isolate the two cooling systems. The cryogenic thermal switch also has application to the Objective Flight System to reduce heat load parasitics from a redundant refrigerator system. Several thermal switch designs (including a gas gap switch, with remote storage or sealed gas, and a diode heat pipe) were evaluated. A configuration and requirements were developed for a validation demonstration program utilizing a gas gap sorption switch. The requirements were also flowed into an existing cryogenic flexible diode heat pipe technology program.
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