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Effects of DC gas flow on performance of two-stage 4 K pulse tube coolers

机译:直流气流对两级4 K脉冲管冷却器性能的影响

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DC flow was found to exist in most double-inlet pulse tube coolers from theoretical simulations. DC flow effects in a 4 K pulse tube cooler were studied by numerical analysis and experiment. Numerical predictions show that a negative DC flow from the hot end of the pulse tube to the inlet of regenerator has two positive effects on the cooler performance: (1) increasing cooling capacity of the pulse tube; and (2) dissipating the enthalpy flow at the hot end of the pulse tube. Several functions which cause DC flow, such as valve timing and geometry of double-inlet valve and DC flow bypass, were tested in the two-stage 4 K pulse tube cooler. The predictions and experiment both show that the negative DC flow leads to change of temperature profiles in pulse tube and regenerator. Experiments verify that cooling power at 4.2 K of the two-stage pulse tube cooler can be considerably improved with aid of a suitable negative DC flow. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 12]
机译:根据理论模拟,发现大多数双入口脉冲管冷却器中都存在直流电。通过数值分析和实验研究了4 K脉冲管冷却器中的直流流动效应。数值预测表明,从脉冲管的热端到蓄热室入口的直流负流对冷却器性能有两个积极影响:(1)增加脉冲管的冷却能力; (2)消散在脉冲管热端的焓流。在两级4 K脉冲管冷却器中测试了导致直流流动的几种功能,例如阀定时和双入口阀的几何形状以及直流流动旁路。预测和实验均表明,负直流电会导致脉冲管和再生器中温度分布的变化。实验证明,借助适当的负直流电,可以大大提高两级脉冲管冷却器在4.2 K时的冷却功率。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:12]

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