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Effect of gravity orientation on the thermal performance of Stirling-type pulse tube cryocoolers

机译:重力取向对斯特林型脉冲管冷冻机热性能的影响

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摘要

The effect of angular orientation on the off-state conduction of pulse tube cryocoolers has been previously explored, as has the effect of orientation on the thermal performance of low-frequency (approx 2 Hz) GM-style pulse tube refrigerators. The significant effects that have been found are well explained by the presence of free convection that builds up in the hollow pulse tube when the hot end of the pulse tube is not higher than the cold end. This paper extends the investigation of angular orientation effects to the refrigeration performance of high frequency (approx 40 Hz) Stirling-type pulse tube cryocoolers typical of those used in long-life space applications. Strong orientation effects on the performance of such cryocoolers have recently been observed during system-level testing of both linear and U-tube type pulse tubes. To quantify the angular dependency effects, data have been gathered on both U-tube and linear type pulse tubes of two different manufacturers as a function of orientation angle, cold-tip temperature, and compressor stroke.
机译:以前已经探讨了角取向对脉冲管低温冷却器关闭状态传导的影响,以及取向对低频(约2 Hz)GM型脉冲管制冷机的热性能的影响。当脉冲管的热端不高于冷端时,空心对流管中会形成自由对流,从而很好地说明了已发现的显着效果。本文将对角取向效应的研究扩展到高频(约40 Hz)斯特林型脉冲管低温冷却器的制冷性能,这在长寿命空间应用中通常使用。最近,在线性和U型脉冲管的系统级测试期间,已观察到对此类低温冷却器性能的强烈定向影响。为了量化角度依赖性影响,已经收集了两个不同制造商的U型管和线性脉冲管的数据,这些数据是定向角,冷端温度和压缩机冲程的函数。

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