Infrared Technology, Volume. 47, Issue 5, 539(2025)
Research Progress of Pulse Tube With Acoustic Power Recovery
[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.
Get Citation
Copy Citation Text
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