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Thermal Vacuum Testing of a Novel Loop Heat Pipe Design for the Swift BAT Instrument

机译:Swift BAT仪器的新型回路热管设计的热真空测试

摘要

An advanced thermal control system for the Burst Alert Telescope on the Swift satellite has been designed and an engineering test unit (ETU) has been built and tested in a thermal vacuum chamber. The ETU assembly consists of a propylene loop heat pipe, two constant conductance heat pipes, a variable conductance heat pipe (VCHP), which is used for rough temperature control of the system, and a radiator. The entire assembly was tested in a thermal vacuum chamber at NASA/GSFC in early 2002. Tests were performed with thermal mass to represent the instrument and with electrical resistance heaters providing the heat to be transferred. Start-up and heat transfer of over 300 W was demonstrated with both steady and variable condenser sink temperatures. Radiator sink temperatures ranged from a high of approximately 273 K, to a low of approximately 83 K, and the system was held at a constant operating temperature of 278 K throughout most of the testing. A novel LHP temperature control methodology using both temperature-controlled electrical resistance heaters and a small VCHP was demonstrated. This paper describes the system and the tests performed and includes a discussion of the test results.
机译:已经为Swift卫星上的Burst Alert Telescope设计了一套先进的热控制系统,并已在热真空室内构建并测试了工程测试单元(ETU)。 ETU组件包括一个丙烯回路热管,两个恒定电导率热管,一个用于系统粗略温度控制的可变电导率热管(VCHP)和一个散热器。整个组件于2002年初在NASA / GSFC的热真空室中进行了测试。测试以热质量表示仪器,并使用电阻加热器提供热量进行传递。在稳定和可变的冷凝器接收器温度下均显示出超过300 W的启动和传热。散热器沉温度范围从大约273 K的最高温度到大约83 K的最低温度,并且在整个测试过程中,系统均保持在278 K的恒定工作温度下。展示了同时使用温度控制电阻加热器和小型VCHP的新型LHP温度控制方法。本文介绍了系统和执行的测试,并讨论了测试结果。

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