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http://dx.doi.org/10.9714/psac.2010.12.4.041

A Numerical Study on Operating Characteristics of a Miniature Joule-Thomson Refrigerator  

Hong, Yong-Ju (Korea Institute of Machinery & Materials)
Park, Seong-Je (Korea Institute of Machinery & Materials)
Choi, Young-Don (Department of Mechanical Engineering, Korea University)
Publication Information
Progress in Superconductivity and Cryogenics / v.12, no.4, 2010 , pp. 41-45 More about this Journal
Abstract
Miniature Joule-Thomson refrigerators have been widely used for rapid cooling of infrared detectors, optoelectronic device, and integrated circuits of micro electronics. The typical J-T refrigerator consists of the recuperative heat exchanger with the double helical tube and fin configuration, J-T nozzle, a mandrel, Dewar and a compressed gas storage bottle. In this study, to predict the thermodynamic behaviors of the refrigerator with a compressed gas storage bottle during the cool-down time, numerical study of transient characteristics for a J-T refrigerator was developed. A simplified transient one.dimensional model of the momentum and energy equations was simultaneously solved to consider the thermal interactions of the each component of the refrigerator. To account for effects of the thermal mass of the solid, the heat capacities of the tube, fins, mandrel and Dewar are considered. The results show the charged gas pressure of the gas storage bottle has significant effects on the performance of the J-T refrigerator. At the elevated gas pressure of the gas storage bottle, the large capacity of the compressed gas storage does not need to get the fast cool-down performance of the J-T refrigerator in the cool-down stage.
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1 S. B. Chien, L. T. Chen, F. C. Chou, "A study on the transient characteristics of a self-regulating Joule-Thomson cryocooler," Cryogenics, Vol. 36, pp. 979-984, 1996.   DOI   ScienceOn
2 Y. J. Hong, S. J. Park, Y. D. Choi, "A numerical study on the performance of the miniature Joule-Thomson refrigerator" Adv. Cryogenic Eng, Vol. 55, pp. 103-110, 2010.
3 H. K. Versteeg, W. Malalasekera, An introduction to computational fluid dynamics, Longman S & T, 1995.
4 E. W. Lemmon, M. O. McLinden, M. L. Huber ML, NIST reference fluid thermodynamic and transport properties-REFPROP, NIST, 2002.
5 K. D. Timmerhaus, M. T. Flynn, Cryogenic process engineering, Plenum Press, 1989.
6 A. F. Mills, Heat and mass transfer, Richard D. Irwin, Inc., 1995.
7 K. C. Ng, H. Xue, J. B. Wang, "Experimental and numerical study on a miniature Joule-Thomson cooler for steady-state characteristics," Int. J. of Heat and Mass Transfer, Vol. 45, pp. 609-618, 2002.   DOI   ScienceOn
8 H. Xue, K. C. Ng, J . B. Wang, "Performance evaluation of the recuperative heat exchanger in a miniature Joule-Thomson cooler," Applied Thermal Engineering. Vol. 21, pp.1829-1844, 2002.
9 H. T. Chua, X. Wang, H. Y. Teo, "A numerical study of the Hampson-type miniature Joule-Thomson cryocooler," Int. J. of Heat and Mass Transfer, Vol. 49, pp. 582-593, 2006.   DOI   ScienceOn
10 Y. J. Hong, H. B. Kim, S. J. Park, Y. D. Choi, "Study of the performance of the fin-tube heat exchanger of the miniature Joule-Thomson refrigerator," J. of Korea Institute of Applied Superconductivity and Cryogenics, Vol. 11, No. 1, pp. 55-59. 2009 (in Korean).   과학기술학회마을
11 Y. J. Hong, S. J. Park, H. B. Kim, Y. D. Choi, "The cool-down characteristics of a miniature Joule-Thomson refrigerator," Cryogenics, Vol. 46, pp.391-395, 2006.   DOI   ScienceOn
12 F. C. Chou, C. F. Pai, S. B. Chien, J. S. Chen, "Preliminary experimental and numerical study of transient characteristics for a Joule-Thomson cryocooler," Cryogenics, Vol. 35, pp. 311-316, 1995.   DOI   ScienceOn