Performance simulation of a Stirling cryocooler using CFD

被引:0
|
作者
Ahmed, Luqman [1 ]
Masud, Jehanzeb [2 ]
Toor, Zakria [2 ]
机构
[1] NUST, Coll Aeronaut Engn, Dept Aerosp Engn, Risalpur, Pakistan
[2] Air Univ, IAA, Dept Mech & Aerosp Engn, Islamabad, Pakistan
关键词
Stirling cryocoolers; reciprocating flow; User Defined Functions; dynamic mesh; refrigeration;
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Small Stirling cryocoolers, with refrigeration capacities in the range of 0.5W to 5W, at cooling temperatures as low as 60K have found their way into the fields of aerospace, medical and energy. The present work is aimed at performance simulation of a gamma type, split -Stirling cryocooler using CFD. Simulation of the reciprocating flow inside a 2-D model of the cryocooler has been accomplished using the dynamic mesh technique in ANSYS Fluent. For this purpose, two separate User Defined Functions (UDFs) have been compiled for the movement of piston and displacer. In order to operate the cryocooler based on the Stirling cycle an appropriate phase difference has been maintained between the piston and displacer movement. Linearly elastic solid model of the dynamic mesh technique has been adopted for mesh motion inside the displacer. This model is time intensive but proves to be appropriate for cyclic simulations. The mesh inside the working spaces is compressed and expanded proportionally avoiding the negative volume error that is often encountered in moving mesh problems. Temperature -dependent properties of the working fluid and matrix material have been incorporated by using appropriate coefficients of polynomial functions as a function of temperature. Area weighted temperature and pressure inside the compression and expansion spaces have been reported for the ANSYS Fluent simulations. It is shown that the modelled cryocooler can achieve a refrigeration temperature of 60K with a heat load of 0.75W. The results thus obtained have been compared with the experimental result and found to be in close conformance. The methodology adopted in the current work can be utilized to simulate the performance of a cryocooler and can be helpful in finding the optimum values of its operational parameters.
引用
收藏
页码:767 / 771
页数:5
相关论文
共 50 条
  • [31] Drive and control system for a Stirling cryocooler
    Biao, W
    Ji, GL
    Wu, YN
    CRYOCOOLERS 10, 1999, : 791 - 793
  • [32] The effect of operating parameters in the Stirling cryocooler
    Park, SJ
    Hong, YJ
    Kim, HB
    Koh, DY
    Kim, JH
    Yu, BK
    Lee, KB
    CRYOGENICS, 2002, 42 (6-7) : 419 - 425
  • [33] NOVEL DIAPHRAGM BASED STIRLING CRYOCOOLER
    Caughley, A. J.
    Tucker, A.
    Gschwendtner, M.
    Sellier, M.
    ADVANCES IN CRYOGENIC ENGINEERING, VOLS 57A AND 57B, 2012, 1434 : 667 - 674
  • [34] The ball 12 K Stirling cryocooler
    Gully, WJ
    Glaister, D
    ADVANCES IN CRYOGENIC ENGINEERING, VOL 47, PTS A AND B, 2002, 613 : 1045 - 1052
  • [35] Computer aided tuning for Stirling cryocooler
    Liu, YC
    Guo, FZ
    ENERGY CONVERSION AND APPLICATION, VOL I AND II, 2001, : 1026 - 1029
  • [36] CFD modeling and experimental verifications of a four-stage Stirling-type pulse tube cryocooler
    Zha, Rui
    Zhang, Tao
    Li, Jiaqi
    Tan, Jun
    Zhao, Yongjiang
    Zhao, Bangjian
    Dang, Haizheng
    27TH INTERNATIONAL CRYOGENICS ENGINEERING CONFERENCE AND INTERNATIONAL CRYOGENIC MATERIALS CONFERENCE 2018 (ICEC-ICMC 2018), 2019, 502
  • [37] Design and development of porous regenerator for Stirling cryocooler using additive manufacturing
    Srinivasan, K., V
    Manimaran, A.
    Arulprakasajothi, M.
    Revanth, M.
    Arolkar, Vijay A.
    THERMAL SCIENCE AND ENGINEERING PROGRESS, 2019, 11 : 195 - 203
  • [38] CFD analysis of radiation impact on Stirling engine performance
    Ben-Mansour, R.
    Abuelyamen, A.
    Mokheimer, Esmail M. A.
    ENERGY CONVERSION AND MANAGEMENT, 2017, 152 : 354 - 365
  • [39] Performance Parameters Prediction for FPFD Miniature Stirling Cryocooler Considering Polytropic Processes
    Sham, Radhey
    Jindal, Tejinder Kumar
    Saluja, Rajesh Kumar
    Kumar, Vineet
    JOURNAL OF LOW TEMPERATURE PHYSICS, 2020, 199 (5-6) : 1211 - 1229
  • [40] PERFORMANCE PREDICTION AND PARAMETRIC ANALYSIS OF 2-STAGE STIRLING CYCLE CRYOCOOLER
    NATU, PV
    NARAYANKHEDKAR, KG
    CRYOGENICS, 1994, 34 : 219 - 222