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双温区声功回收型脉管制冷机环境温度影响研究
惠贺军, 黄政, 殷旺, 伍文婷, 丁磊, 蒋珍华, 刘少帅, 吴亦农
0
(中国科学院上海技术物理研究所 上海)
摘要:
脉管制冷机由于冷端振动输出小且可靠性较高,广泛应用于空间探测、量子计算等领域。双温区脉管制冷机可以满足两个温区同时取冷的需求,但是在实际应用场景中,制冷性能受到环境温区影响较大,限制了其在复杂环境中的应用。本文基于双温区声功回收主动调相的脉管制冷机,研究环境温度对调相器气体负载、冷指入口声功及双温区制冷量的影响特性。研究表明,相较于传统仅包含膨胀调相腔的活塞型调相器,当环境温度自253 K升高至333 K时,声功回收型调相器活塞总气体负载刚度最大变化量仅2630 kg?s-2,影响程度降低86.1%,表明了声功回收型调相器具有更强的环境温度适应性。实验结果显示,在制冷机环境及散热面温度分别为253 K和333 K时,通过主动调控调相器活塞运动振幅和相位差,可对双温区制冷量进行主动调控。
关键词:  脉管低温制冷机  声功回收  主动调相  环境温度  低温技术
DOI:
投稿时间:2024-01-25  修订日期:2024-02-02   录用日期:2024-04-18
基金项目:中国科学院率先行动“引才计划”人才项目;国家自然科学基金(51806231);中国科学院战略性先导科技专项(B类)(XDB35000000,XDB35040102)。 ,2* WU Yinong1,2
Investigation of the Influences of the Ambient Temperature on the Dual-Temperature Zones Pulse Tube Refrigerator with Acoustic Power Recovery Phase Shifter
Abstract:
Pulse tube refrigerators are widely used in space detection and quantum computing due to their low vibration output at the cold end and high reliability. Dual-temperature zone pulse tube refrigerators can simultaneously meet the demand for dual cooling temperatures to obtain cooling capacity. However, in the actual application scenario, the cooling performance is deeply affected by the ambient temperature zones, which limits its application in complicated environments. In this article, based on the dual-temperature zones pulse tube refrigerator with active acoustic power recovery phase shifter, the influence characteristics of the ambient temperature on the gas spring of the phase shifter, the inlet acoustic power of the cold finger, and the dual-temperature cooling capacities are investigated. Unlike the conventional piston-type phase shifter, which only has an expansion chamber, the acoustic power recovery phase shifter has an acoustic power recovery chamber at the back end of the piston, which can recover the expansion acoustic power from the hot end of the pulse tube. The results of the study show that, compared with the traditional piston-type phase regulator containing only an expansion chamber, when the ambient temperature increases from 253 K to 333 K, the maximum change in the total gas spring stiffness of the piston in the acoustic power recovery phase shifter is only 2630 kg?s-2, and level of impact could be reduced by 86.1%, which shows that the acoustic power recovery phase shifter has a more eminent adaptability to the ambient temperature. The experiment shows active control of cooling capacities in dual-temperature zones by adjusting the piston motion of the phase shifter at ambient temperatures of 253 K and 333 K.
Key words:  Pulse tube refrigerator  acoustic power recovery  active phase shifting  ambient temperature  low-temperature technology

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