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Cryogenic diode heat pipe system for cryocooler redundancy

机译:低温冷却器冗余的低温二极管热管系统

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This paper describes the design, manufacturing, modeling, and testing of a methane cryogenic diode heat pipe (CDHP) thermal switching system for the CRISM instrument onboard the NASA/JPL Mars Reconnaissance Orbiter. The purpose of the CDHP system is to enable three 1-year cryocoolers to provide 2 years of cooling to the 100 K CRISM sensor while minimizing the parasitic heat input from the two OFF (redundant) cryocoolers. Without the CDHP system, the parasitic heat input from the two OFF cryocoolers would prevent the CRISM sensor from being cooled to an acceptably low operating temperature. To provide sufficient structural support for launch with low parasitic heat input, the three methane CDHPs were supported by small diameter Kevlar tension cables attached to a shoebox-shaped cold shroud that enveloped the assembly. The cold shroud -- thermally coupled by a flexible link to the (cryoradiator cooled) cold side of the instrument housing -- was suspended from the warm side of the instrument housing by a second set of Kevlar cables, creating a dual-nested Kevlar cable thermal isolation/structural support system similar to that flown on the CRYOTSU flight experiment on STS-95. To accurately test the thermal switching system, a novel laboratory set-up was utilized involving three parallel heat metering cryocooler simulators (Q-meters). Numerous test runs were carried out to evaluate the impact of various system operating parameters. The parasitic heat leak predictions corresponded very closely to the measured data. The paper describes the effort from concept development through test data analysis.
机译:本文描述了设计,制造,建模和甲烷低温二极管热管(CDHP)为CRISM仪器板载NASA / JPL火星侦察轨道热交换系统的测试。的CDHP系统的目的是使三个1年制冷机提供2年冷却到100 K时CRISM传感器,同时从两个OFF(冗余)制冷机最小化寄生热输入。如果没有CDHP系统中,来自所述两个OFF制冷机的寄生热输入将防止CRISM传感器被冷却到可接受的低的工作温度。为了提供与低寄生热输入发射足够的结构支持,三个甲烷CDHPs被附连到一个鞋盒状冷护罩笼罩组装小直径凯夫拉尔张力电缆支承。冷护罩 - 通过柔性链接热耦合到(cryoradiator冷却)仪器壳体的冷侧 - 由第二组凯夫拉尔电缆从仪器壳体的暖侧悬浮,从而形成双嵌套凯夫拉尔电缆热隔离/类似于飞行对STS-95的飞行CRYOTSU实验结构支撑系统。为了准确地测试热交换系统中,一种新颖的实验室装置被利用涉及三个平行的热计量制冷机模拟器(Q-米)。大量的测试运行进行了评估各种系统运行参数的影响。寄生热泄漏的预测对应非常接近所测量的数据。本文介绍了从概念开发到测试数据分析工作。

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