Adaptive vibration reduction on dual-opposed piston free displacer Stirling cooler

被引:2
|
作者
Arts, R. [1 ]
de Bruin, A. [1 ]
Willems, D. [1 ]
de Jonge, G. [1 ]
Benschop, A. [1 ]
机构
[1] Thales Cryogen BV, Eindhoven, Netherlands
来源
关键词
Cryocooler; Stirling; Adaptive; Vibration; Split; Linear; Displacer;
D O I
10.1117/12.2049686
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In a Stirling-type pulse-tube cooler with a dual-opposed piston compressor, the residual vibration exported by the cooler is primarily a result of residual imbalances between compressor motors. Using an electronic feedback loop [1] and driving compressor motors in a master-slave configuration, the exported force from the compressor can be regulated to negligible levels. This has been demonstrated in a multitude of commercial applications [2] as well as in space applications. In a novel application of the same electronic feedback technology, the residual exported forces resulting from the motion of the free moving displacer of a Stirling cold finger are compensated, by using the linear dual-opposed piston compressor as an active balancer. Theoretical analysis of this is provided, measurements are presented on different cooler types, and the effect of integration aspects - hard mount versus suspended - is discussed. The effect on exported vibration as well as power efficiency is discussed and compared between Stirling and pulse-tube type coolers. Currently available off-the-shelf hardware, the CDE7232, is presented and future developments are discussed.
引用
收藏
页数:8
相关论文
共 37 条
  • [1] Dynamic response of a dual-opposed free-piston Stirling generator
    Xiao, Lei
    Wu, Zhanghua
    Zhu, Qilu
    Jia, Zilong
    Zhao, Dong
    Hu, Jianying
    Zhu, Shunmin
    Luo, Ercang
    ENERGY, 2023, 284
  • [2] Operating characteristics study of a dual-opposed free-piston Stirling generator
    Sun, Haojie
    Yu, Guoyao
    Zhao, Dan
    Zhu, Shunmin
    Dai, Wei
    Luo, Ercang
    APPLIED THERMAL ENGINEERING, 2024, 249
  • [3] Design and development of miniature free piston free displacer dual opposed Stirling cryocooler
    Bisht, Ajay Singh
    Kuzhiveli, Biju T.
    27TH INTERNATIONAL CRYOGENICS ENGINEERING CONFERENCE AND INTERNATIONAL CRYOGENIC MATERIALS CONFERENCE 2018 (ICEC-ICMC 2018), 2019, 502
  • [4] Experimental and numerical study on the mechanical inconsistency of a dual-opposed free-piston Stirling engine generator
    Sun, Haojie
    Jin, Qingyue
    Yu, Guoyao
    Zhu, Shunmin
    Luo, Ercang
    ENERGY, 2025, 315
  • [5] Advances in Pulse Tube Cooler with Dual-opposed Ambient Temperature Displacers
    Li, Haibing
    Zhang, Yibing
    Chen, Shuai
    Wang, Xiaotao
    Yang, Zhaohui
    Yang, Mingfa
    Dai, Wei
    ADVANCES IN CRYOGENIC ENGINEERING: PROCEEDINGS OF THE CRYOGENIC ENGINEERING CONFERENCE, CEC 2023, 2024, 1301
  • [6] Axially Opposed Magnetization for Free Piston Stirling Engines
    Rogers, Uri
    Clark, David
    Jackson, Scott
    Ferguson, Tammy
    Harris, David
    INTERNATIONAL JOURNAL OF APPLIED ELECTROMAGNETICS AND MECHANICS, 2013, 41 (02) : 143 - 152
  • [7] PROTOTYPE LIQUID-PISTON FREE-DISPLACER STIRLING ENGINE.
    Goldberg, Louis F.
    Rallis, Costa J.
    Proceedings of the Intersociety Energy Conversion Engineering Conference, 1979, 1 : 1103 - 1108
  • [8] Simulation of a Martini displacer free piston Stirling engine for electric power generation
    Seraj Mehdizadeh, Nasser
    Stouffs, Pascal
    International Journal of Applied Thermodynamics, 2000, 3 (01): : 27 - 34
  • [9] THE CFD METHODOLOGY FOR SIMULATING PUMPING LOSS FROM DISPLACER AND PISTON SEALS OF FREE PISTON STIRLING ENGINE
    Munir, Umair
    Shah, Asad Naeem
    Kamran, Muhammad Sajid
    Farhan, Muhammad
    Anwar, Zahid
    THERMAL SCIENCE, 2022, 26 (01): : 13 - 23
  • [10] FREE-DISPLACER, FREE-PISTON STIRLING ENGINE - POTENTIAL-ENERGY CONSERVER
    MARTINI, WR
    IEEE TRANSACTIONS ON AEROSPACE AND ELECTRONIC SYSTEMS, 1975, 11 (05) : 956 - 956