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Comparison of two different ways of using inertance tube in a pulse tube cooler

机译:脉冲管冷却器中使用惯性管的两种不同方式的比较

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摘要

It is well known that the pressure wave should lead the volume flow rate at the ambient end of the pulse tube for a high-efficiency operation of a pulse tube cooler. Inertance tube can provide such a phase relationship without DC flow problem. However, inertance tube is always connected with a reservoir in previous literatures. Through theoretical calculation here, inertance tube without a reservoir can also provide a rather large phase-leading effect. Thus phasor diagram is used to analyze the relationship between phase-leading requirement and the pulse tube geometry. Roughly speaking, a larger void volume of pulse tube would require a larger phase-leading effect. Comparison experiments are also done on a thermoacoustically-driven pulse tube cooler. With i.d.2 mm tube as inertance tube, the tube without reservoir yields close results in terms of lowest temperature to that of the tube with reservoir and both give much better performance than that of an orifice with reservoir. Finally, the advantages of using inertance tube without reservoir are given.
机译:众所周知,为了使脉冲管冷却器高效运行,压力波应领先于脉冲管周围端的体积流量。惯性管可以提供这样的相位关系而没有直流流动问题。然而,惯性管在以前的文献中总是与储层相连。通过此处的理论计算,不带储层的惯性管也可以提供相当大的相位超前效果。因此,相量图用于分析相位超前要求和脉冲管几何形状之间的关系。粗略地说,较大的脉冲管空隙体积将需要较大的相位超前效果。在热声驱动脉冲管冷却器上也进行了比较实验。使用直径为2 mm的管作为惯性管时,不带储液罐的管的最低温度低于带储液罐的管的温度,并且两者的性能都比带储液罐的孔的性能好得多。最后,给出了使用不带储液罐的惯性管的优点。

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