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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Effects of DC flow on pulse tube cryocooler working at liquid hydrogen and liquid nitrogen temperatures
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Effects of DC flow on pulse tube cryocooler working at liquid hydrogen and liquid nitrogen temperatures

机译:DC流动对液体氢气温度工作的脉管冷冻机的影响

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摘要

The direct current gas flow (DC flow), normally treated as a loss in the pulse tube cryocoolers (PTCs) in the past, has been found may be beneficial to the cooling performance of the PTC working at low temperatures recently. However, the reason why it can improve the cooling performance is still not clear enough. In order to reveal the working mechanism of the DC flow independently, simulation analysis and experiment verification are carried out on a two-stage Stirling type PTC without the double-inlet valve. Results indicate that in the second stage PTC working around 20 K, by introducing the DC flow with a positive direction from regenerator side to pulse tube side, the cooling performance will be improved due to the remarkable increase of the AC enthalpy flow in the pulse tube and the decrease of AC enthalpy flow in the regenerator. This is because with the help of positive DC flow, the temperature gradients in the pulse tube and the regenerator of the 20 K PTC are improved, i.e. the DC flow causes smaller heat losses in them. Nevertheless, the DC flow has no help on improving the cooling performance of the PTC working around 80 K. Simulation and experiment show consistency that with an optimized DC flow, the no-load refrigeration temperature of the second stage Stirling PTC drops 6-7 K, and the cooling capacity at 22 K increases about 1 W.
机译:已经发现通常在脉冲管冷冻机(PTCS)中的直流气流(DC流量),通常被视为脉冲管冷冻机(PTCS)的损失可能是有利于最近在低温下工作的PTC的冷却性能。但是,它可以提高冷却性能的原因仍然不够清楚。为了揭示DC流量的工作机制,在没有双入口阀的两级斯特林型PTC上进行仿真分析和实验验证。结果表明,在20 k周期的第二阶段PTC中,通过将与从再生器侧的正方向引入脉冲管侧的DC流动,由于脉冲管中的AC焓流显着增加,将改善冷却性能再生器中的AC焓流降低。这是因为在正面DC流的帮助下,脉冲管中的温度梯度和20kPTC的再生器得到改善,即,DC流导致它们中的较小的热损失。尽管如此,直流流动没有帮助改善PTC的冷却性能,改善了80 k的PTC。模拟和实验表明,使用优化的DC流量,第二阶段斯特林PTC下降6-7 k的无负荷制冷温度显示一致性。 ,22 k处的冷却能力增加约1w。

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