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Heat pipes for cryogenic applications on satellites

机译:用于卫星的低温应用的热管

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One of the current applications for cryogenic heat pipes is the European astronomy satellite INTEGRAL where two aluminum/ammonia axially grooved heat pipes will be used to transport a heat load of 20 W from an intermediate stage at 210K to a radiator. A prototype heat pipe of 1.65 m long, with a 14 mm outside diameter, has been manufactured and tested. The extrapolated 0g maximum heat transport capability at 200K is 60 W.m. Tests have shown the reliability of the ammonia heat pipe to work close to its freezing point (down to 197K) and its ability to thaw within a few minutes using the right procedure. A development model with the same heat pipe profile but filled with ethane has shown a maximum heat transport capability of 19 W.m at 200K under 5 mm adverse tilt (46 W.m for the ammonia) and just a few watts at ambient temperature. This confirms the suitability of the ammonia heat pipe for the INTEGRAL application, where the operating temperature is (200K; 300K).
机译:电流热管的目前应用之一是欧洲天文卫星积分,其中两个铝/氨轴向沟槽的热管将用于将20W的热负荷从210K处的中间级输送到散热器。已经制造和测试了14毫米,直径为14毫米的原型加热管。 200K的外推0G最大热传输能力为60点。测试表明,氨气热管的可靠性,接近其冻结点(下至197K),并且可以使用正确的程序在几分钟内解冻的能力。具有相同热管型材但充满乙烷的开发模型,在200k下,在5mm不利倾斜(氨为46针)下的最大热传输能力为19点,并且在环境温度下只有几瓦。这证实了氨热管对整体应用的适用性,操作温度为(200K; 300K)。

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