A Gifford-McMahon cycle cryocooler below 2K

被引:0
|
作者
Satoh, T [1 ]
Onishi, A [1 ]
Umehara, I [1 ]
Adachi, Y [1 ]
Sato, K [1 ]
Minehara, EJ [1 ]
机构
[1] Sumitomo Heavy Ind Ltd, Ctr Res & Dev, Hiratsuka, Kanagawa 2540806, Japan
来源
关键词
D O I
暂无
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
According to theory, a Gifford-McMahon (GM) cycle cryocooler with He-4 cannot cool below 2 K because of the He-4 superfluid transition near this temperature. However replacing 4 He by He-3 removes this temperature limitation. The cooling performance of a GM cryocooler with a HoCu2 magnetic regenerator material is investigated using He-3. The minimum temperature of 2.3 K with He-4 goes down to 1.65 K when the He-4 working fluid is replaced by He-3. The maximum cooling capacity at 2 K is 53.9 mW with a compressor power of about 2.5 kW, and the cooling capacity at 4.2 K is enhanced by more than 20%. The effect of a new regenerator material (NdInCu2) on the cooling performance was also investigated. The minimum temperature decreased to 1.64 K and the cooling capacity at 2 K improved to 57.1 mW with the use of this material in the bottom 40% of the regenerator.
引用
收藏
页码:381 / 386
页数:6
相关论文
共 50 条
  • [31] 2 STAGE GIFFORD-MCMAHON CYCLE CRYOREFRIGERATOR OPERATED BY GAS BALANCING PRINCIPLE
    THIRUMALESHWAR, M
    PANDEY, RM
    CRYOGENICS, 1990, 30 (02) : 100 - 104
  • [32] Influence of the Properties of Regenerative Heat Exchanger Packing Material on the Efficiency of a Gifford-Mcmahon Cryocooler
    Ankudinov, V. B.
    Marukhin, Yu A.
    Ogorodnikov, V. P.
    Ryzhkov, V. A.
    CHEMICAL AND PETROLEUM ENGINEERING, 2019, 55 (1-2) : 136 - 141
  • [33] Test apparatus utilizing a Gifford-McMahon cryocooler to measure the thermal performance of multilayer insulation
    Ohmori, T.
    Kodama, K.
    Tomaru, T.
    Kimura, N.
    Suzuki, T.
    PROCEEDINGS OF THE 25TH INTERNATIONAL CRYOGENIC ENGINEERING CONFERENCE AND INTERNATIONAL CRYOGENIC MATERIALS CONFERENCE 2014, 2015, 67 : 999 - 1004
  • [34] Effect of valve opening shapes on the performance of a single-stage Gifford-McMahon cryocooler
    Panda, Debashis
    Satapathy, Ashok K.
    Sarangi, Sunil K.
    ENGINEERING REPORTS, 2019, 1 (03)
  • [35] Drive force optimization of a pneumatically-driven Gifford-McMahon cryocooler by numerical modeling
    Lei, Tian
    Zuev, Yuri L.
    Bao, Qian
    Xu, Mingyao
    ADVANCES IN CRYOGENIC ENGINEERING, 2020, 755
  • [36] Multidimensional numerical simulation of thermodynamic and oscillating gas flow processes of a Gifford-McMahon cryocooler
    Panda, Debashis
    Satapathy, Ashok Kumar
    Sarangi, Sunil Kr.
    Behera, Upendra
    JOURNAL OF NON-EQUILIBRIUM THERMODYNAMICS, 2024, 49 (01) : 27 - 47
  • [37] Attractive performance of a Gifford-McMahon cryocooler by co-axial layout of regenerator materials
    Masuyama, Shinji
    Matsui, Kohei
    Tamura, Kota
    Numazawa, Takenori
    CRYOGENICS, 2012, 52 (12) : 695 - 698
  • [38] Thermoacoustic effect in a Gifford-McMahon refrigerator
    Biwa, T
    Sunahara, S
    Mizutani, U
    PHYSICA B-CONDENSED MATTER, 2003, 329 : 1608 - 1609
  • [39] DYNAMIC MODELING OF A GIFFORD-MCMAHON CRYOREFRIGERATOR
    MINAS, C
    HUALDE, PM
    CRYOGENICS, 1992, 32 (07) : 634 - 639
  • [40] PARAMETRIC ANALYSIS AND OPTIMIZATION OF A GIFFORD-MCMAHON CRYOREFRIGERATOR
    MINAS, C
    CRYOGENICS, 1992, 32 (12) : 1125 - 1130