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Comparison of Thermal Performance Characteristics of Ammonia and Propylene Loop Heat Pipes

机译:氨和丙烯环管的热性能特征比较

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摘要

In this paper, experimental work performed on a breadboard Loop Heat Pipe (LHP) is presented. The test article was built by DCI for the Geoscience Laser Altimeter System (GLAS) instrument on the ICESat spacecraft. The thermal system requirements of GLAS have shown that ammonia cannot be used as the working fluid in this LHP because GLAS radiators could cool to well below the freezing point of ammonia. As a result, propylene was proposed as an alternative LHP working fluid since it has a lower freezing point than ammonia. Both working fluids were tested in the same LHP following a similar test plan in ambient conditions. The thermal performance characteristics of ammonia and propylene LHP's were then compared. In general, the propylene LHP required slightly less startup superheat 5nd less control heater power than the ammonia LHP, The thermal conductance values for the propylene LHP were also lower than the ammonia LHP. Later, the propylene LHP was tested in a thermal vacuum chamber. These tests demonstrated that propylene could meet the GLAS thermal design requirements. Design guidelines were proposed for the next flight-like Development Model (DM) LHP for thermal control of the GLAS instrument.
机译:本文介绍了在面包板回路热管(LHP)上进行的实验工作。该测试文章是由DCI为ICESat航天器上的地球科学激光测高仪(GLAS)仪器制造的。 GLAS的热系统要求表明,该LHP不能将氨用作工作流体,因为GLAS散热器可能冷却到远低于氨的冰点。结果,由于丙烯的凝固点比氨低,因此提出了丙烯作为LHP的替代流体。在相似的测试计划下,两种工作液均在相同的LHP环境条件下进行测试。然后比较了氨和丙烯LHP的热性能特征。通常,丙烯LHP所需的启动过热度比氨LHP略低5个控制加热器功率。丙烯LHP的导热系数也低于氨LHP。随后,在热真空室中测试了丙烯LHP。这些测试表明,丙烯可以满足GLAS热设计要求。提出了用于GLAS仪器热控制的下一个类似飞行的开发模型(DM)LHP的设计指南。

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