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On cycle-averaged pressure in a G-M type pulse tube refrigerator

机译:G-M型脉冲管制冷机的平均循环压力

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An experimental investigation has been carried out on dynamical pressures of the viscous compressible flow oscillating at different locations in a Gifford-McMahon (G-M) type pulse tube refrigerator operating at cycle-steady states. Measurements show that the oscillating amplitude of the pressure was largest at the hot end of the regenerator while the cycle-averaged pressure was the largest in the reservoir. The latter characteristics can be explained based on a cycle-averaged and cross-sectional averaged of the governing equations for a compressible viscous oscillating flow. The reason why the cycle-averaged pressure of the compressible flow oscillating at low frequencies in a tube increases from the wave generator toward the reservoir is analyzed. In addition, the effect of the cycle-averaged pressure on the refrigeration performance is discussed, which can be used to explain why the system with proper asymmetric charging and discharging periods has a better performance than a symmetric one in a G-M type pulse tube refrigerator.
机译:已经对在循环稳定状态下运行的Gifford-McMahon(G-M)型脉冲管制冷机中不同位置处振荡的粘性可压缩流的动压力进行了实验研究。测量表明,蓄热器的热端压力波动幅度最大,而储层中的循环平均压力最大。可以基于可压缩粘性振荡流的控制方程式的周期平均和横截面平均来解释后一种特性。分析了在管中以低频振荡的可压缩流的周期平均压力从波发生器向储层增加的原因。此外,讨论了平均循环压力对制冷性能的影响,可以用来解释为什么具有适当的不对称充放电周期的系统在G-M型脉冲管制冷机中具有比对称系统更好的性能。

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