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Miniature pulse tube cooler with linear compressor

机译:带有线性压缩机的微型脉冲管冷却器

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Pulse tube coolers operate without any moving solid parts inside the cold finger. This feature promises higher reliability, lower vibrations, and lower production cost, when compared to conventional Stirling coolers. We have designed and constructed a miniature-size pulse tube cooler for potential future replacement of Stirling coolers. To allow for easy access to the cold platform, a U-shaped configuration of pulse tube (diameter 4.5 mm, length: 60 mm) and regenerator has been chosen. The pressure oscillation of the helium working fluid in the system is generated by means of a commercial linear compressor (AIM, model SL100) operated at a frequency of 50 Hz. A combination of capillary and buffer volume and a second-inlet capillary, which are connected to the warm end of the pulse tube, serve to adjust the phase shift between pressure and mass flow oscillation in the cooler. A maximum cooling power of about 0.3 W at 80 K and a slope of the load line of 40 mW/K have been achieved so far at a compressor input power of 90 W and a heat rejection temperature of about 330 K. The overall COP of 0.3 % at 80 K is still appreciably lower than that of comparable Stirling coolers, which is related to enhanced regenerator losses and DC gas-flow in the pulse tube cold head. The experimental data are compared to a linear network model for the pulse tube cold head.
机译:脉冲管冷却器的运行不会使冷指内的任何固体部分移动。与传统的斯特林冷却器相比,此功能具有更高的可靠性,更低的振动和更低的生产成本。我们设计并制造了一种微型脉冲管冷却器,以备将来替换斯特林冷却器。为了方便进入冷平台,已选择脉冲管(直径4.5毫米,长度:60毫米)和蓄热室的U形配置。系统中氦工作流体的压力振荡是通过以50 Hz频率运行的商用线性压缩机(AIM,型号SL100)产生的。毛细管和缓冲液以及第二入口毛细管的组合与脉冲管的热端相连,用于调节冷却器中压力与质量流量振荡之间的相移。到目前为止,在90 W的压缩机输入功率和约330 K的散热温度下,已达到80 K时约0.3 W的最大冷却功率和40 mW / K的负载线斜率。在80 K时,其0.3%仍明显低于同等的斯特林冷却器,这与再生器损耗的增加和脉冲管冷头中的直流气流有关。将实验数据与脉冲管冷头的线性网络模型进行比较。

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