Infrared Technology, Volume. 47, Issue 5, 539(2025)

Research Progress of Pulse Tube With Acoustic Power Recovery

Xingying ZHAO1, Wei HUANG1,2, Jun CHEN1,2, Yun LUO1,2, Wenfan YE1,2, Hao SUN1, Xiang BI1, and Xiaojun LI3
Author Affiliations
  • 1Kunming Institute of Physics, Kunming 650223, China
  • 2National Key Laboratory of Infrared Detection, Kunming 650223, China
  • 3Military Representative Office of the Chengdu Air Force Bureau in Kunming Region, Kunming 650223, China
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    References(18)

    [1] [1] Gifford W E, Longsworth R C. Pulse tube refrigeration[J].Journal of Engineering for Industry, 1964,86: 264-268.

    [2] [2] Gifford W E, Longsworth R C. Pulse tube refrigeration progress[J].Advances in Cryogenic Engineering, 1964,10(B): 69-79.

    [3] [3] Gifford W E, Kyanka G H. Reversible pulse tube refrigeration[J].Advances in Cryogenic Engineering, 1966,12: 619-630.

    [9] [9] Matsubara Y, Miyake A. A Iternative methods of the orifice pulse tube refrigerator[C]//International Cryocooler Conference05, 1988: 127-135.

    [10] [10] Matsubara Y. Classification of pulse tube cryocoolers[C]//International Cryogenic Engineering Conferenc, 1988: 11-16.

    [11] [11] Ishizaki Y, Ishizaki E. Experimental performance of modified pulse tube refrigerator below 80 K down to 23 K[C]//Proceedings of7thInternational Cryocooler Conference, 1992: 140-145.

    [12] [12] ZHU S, NOGAWA M. Pulse tube stirling machine with warm gas-driven displacer[J].Cryogenics, 2010,50(5): 320-330.

    [14] [14] HU J Y, LUO E C, ZHANG L M, et al. A double-acting thermoacoustic cryocooler for high temperature superconducting electric power grids[J].Applied Energy, 2013,112: 1166-1170.

    [15] [15] ZHU S. Step piston pulse tube refrigerator[J].Cryogenics, 2014,64: 63-69.

    [16] [16] LIN Y Z, ZHU S W. Numerical investigation of the new phase shifter for pulse tube refrigerator-inertancetube combining with step-piston[J].International Journal of Refrigeration, 2019,97: 42-48.

    [17] [17] DENG Weifeng, LIU Shaoshuai, CHEN Xi, et al. A work-recovery pulse tube refrigerator for natural gas liquefaction[J].Cryogenics, 2020,111: 1-8.

    [20] [20] KI T, JEONG S. Design and analysis of compact work-recovery phase shifter for pulse tube refrigerator[J].Cryogenics, 2012,52(2/3): 105-110.

    [21] [21] WANG K, DUBEY S. CHOO F H, et al. Modelling of pulse tube refrigerators with inertance tube and mass-spring feedback mechanism[J].Applied Energy, 2016,171: 172-183.

    [22] [22] Swift G W, Gardner D L, Backhaus S. Acoustic recovery of lost power in pulse tube refrigerator[J].J. Acoust. Soc. Am, 1999,105(2): 711-724.

    [23] [23] ZHU S, Kawano S, Nogawa M, et al. Pulse tube refrigerator 8, 389, 819, 2002.[P]. U. S. Patent.

    [24] [24] Swift G W, Gardner D L, Backhaus S N. Quarter-wave pulse tube[J].Cryogenics, 2011,51(10): 575-583.

    [25] [25] XU J, YU G, ZHANG L, et al. Numerical investigation on a 300 Hz pulse tube cryocooler driven by a three-stage traveling-wave thermo-acoustic heat engine[J].Cryogenics,2015,71: 68-75.

    [26] [26] XU J, HU J, ZHANG L, et al. Effect of coupling position on a looped three-stage thermo-acoustically-driven pulse tube cryocooler[J].Energy, 2015,93: 994-998.

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    ZHAO Xingying, HUANG Wei, CHEN Jun, LUO Yun, YE Wenfan, SUN Hao, BI Xiang, LI Xiaojun. Research Progress of Pulse Tube With Acoustic Power Recovery[J]. Infrared Technology, 2025, 47(5): 539

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    Paper Information

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    Received: Mar. 29, 2023

    Accepted: Jul. 3, 2025

    Published Online: Jul. 3, 2025

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