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Numerical and experimental study of an annular pulse tube used in the pulse tube cooler

机译:脉冲管冷却器中使用的环形脉冲管的数值和实验研究

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Multi-stage pulse tube coolers normally use a U-type configuration. For compactness, it is attractive to build a completely co-axial multi-stage pulse tube cooler. In this way, an annular shape pulse tube is inevitable. Although there are a few reports about previous annular pulse tubes, a detailed study and comparison with a circular pulse tube is lacking. In this paper, a numeric model based on CFD software is carried out to compare the annular pulse tube and circular pulse tube used in a single stage in-line type pulse tube cooler with about 10 W of cooling power at 77 K. The length and cross sectional area of the two pulse tubes are kept the same. Simulation results show that the enthalpy flow in the annular pulse tube is lower by 1.6 W (about 11% of the enthalpy flow) compared to that in circular pulse tube. Flow and temperature distribution characteristics are also analyzed in detail. Experiments are then conducted for comparison with an in-line type pulse tube cooler. With the same acoustic power input, the pulse tube cooler with a circular pulse tube obtains 7.88 W of cooling power at 77 K, while using an annular pulse tube leads to a cooling power of 7.01 W, a decrease of 0.9 W (11.4%) on the cooling performance. The study sets the basis for building a completely co-axial two-stage pulse tube cooler.
机译:多级脉冲管冷却器通常使用U型配置。为了紧凑,建立一个完全共轴的多级脉冲管冷却器是有吸引力的。以这种方式,环形形状脉冲管是不可避免的。尽管缺乏关于先前环形脉冲管的一些报道,但缺乏详细的研究和与圆形脉冲管的比较。在本文中,进行了基于CFD软件的数值模型,以比较单级在线式脉冲管冷却器中使用的环形脉冲管和圆形脉冲管,其在77k处具有约10W的冷却功率。长度和两个脉冲管的横截面积保持不变。仿真结果表明,与圆形脉冲管中的相比,环形脉冲管中的焓流量低1.6W(约11%的焓流动)。还详细分析了流动和温度分布特性。然后进行实验以与在线式脉冲管冷却器进行比较。采用相同的声功率输入,具有圆形脉冲管的脉冲管冷却器在77 k处获得7.88W的冷却功率,同时使用环形脉冲管导致7.01W的冷却功率,降低0.9W(11.4%)关于冷却性能。该研究规定了构建完全共轨两级脉冲管冷却器的基础。

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