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Thermal Vacuum Testing of a Helium Loop Heat Pipe for Large Area Cryocooling

机译:大面积冷冻机的氦回路热管的热真空测试

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Future NASA space telescopes and exploration missions require cryocooling of large areas such as optics, detector arrays, and cryogenic propellant tanks. One device that can potentially be used to provide closed-loop cryocooling is the cryogenic loop heat pipe (CLHP). A CLHP has many advantages over other devices in terms of reduced mass, reduced vibration, high reliability, and long life. A helium CLHP has been tested extensively in a thermal vacuum chamber using a cryocooler as the heat sink to characterize its transient and steady performance and to verify its ability to cool large areas or components in the 3K temperature range. The helium CLHP thermal performance test included cool- down from the ambient temperature, startup, capillary limit, heat removal capability, rapid power changes, and long duration steady state operation. The helium CLHP demonstrated robust operation under steady state and transient conditions. The loop could be cooled from the ambient temperature to subcritical temperatures very effectively, and could start successfully by simply applying power to both the capillary pump and the evaporator plate without pre-conditioning. It could adapt to a rapid heat load change and quickly reach a new steady state. Heat removal between 10mW and 140mW was demonstrated, yielding a power turn down ratio of 14. When the CLHP capillary limit was exceeded, the loop could resume its normal function by reducing the power to the capillary pump. Continuous steady operations up to 58 hours at several heat loads were demonstrated. The ability of the helium CLHP to cool large areas was therefore successfully verified.
机译:未来的美国宇航局空间望远镜和勘探任务需要低温冷却,如光学,探测器阵列和低温推进剂罐等大面积。一个可能用于提供闭环低温冷却的一个设备是低温回路热管(CLHP)。在减少质量,减少振动,高可靠性和长寿命方面,CLHP具有许多优点。使用低温冷却器作为散热器在热真空室中广泛测试氦CLP,以表征其瞬态和稳定的性能,并验证其在3K温度范围内冷却大面积或组件的能力。氦CLHP热性能试验包括从环境温度,启动,毛细管极限,散热功能,快速变化快,持续时间稳态操作的冷却下降。氦CLHP在稳态和瞬态条件下展示了鲁棒操作。可以非常有效地从环境温度冷却到亚临界温度的环,并且可以通过简单地向毛细管泵和蒸发器板施加电力而开始成功地开始。它可以适应快速的热负荷变化,快速达到新的稳态。对10MW和140MW之间的热除去,产生功率逆转比为14.当超过CLHP毛细管限值时,环路可以通过将电力降低到毛细管泵的功率来恢复正常功能。持续稳定运行,最高可达58小时的热负荷。因此成功验证了氦ClHP冷却大面积的能力。

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