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Effects of regenerator geometry on pulse tube refrigerator performanceThis paper gives results of the cooling performance of a double-inlet pulse tube refrigerator using various regenerators. The same pulse tube was used for all the experiments and measured 4.76 mm in diameter and 46.2 mm in length. A commercial linear compressor with a swept volume of 4 cm3 was used in these experiments. The operating conditions were held constant at a mean pressure of 2.0 MPa and a frequency of 54 Hz. Using finite difference software called REGEN3.1, developed at NIST, and recent experiment results, we optimized a series of regenerators based on dimensions, materials and screen packing. The values used for calculating the thermal conduction through stacked screens by REGEN3.1 were based on recent experimental results from NIST. The regenerator tubes were designed using 316 stainless steel and titanium materials. The regenerator matrices investigated were 400-mesh and 500-mesh stainless steel screen. The valve settings for both orifices were adjusted to minimize the no-load temperature for all regenerators. A cooling capacity curve from 0 to 3 W was also determined. The performance of the pulse tube refrigerator using the different regenerators is discussed. The experimental results from the various regenerators are evaluated and compared with their corresponding numerically calculated coefficient of performance (COP) and regenerator design as determined by REGEN3.1.
Document ID
20040088901
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Lewis, M.
(National Institute of Standards and Technology Boulder, Colorado 80303, United States)
Kuriyama, T.
Xiao, J. H.
Radebaugh, R.
Date Acquired
August 21, 2013
Publication Date
January 1, 1998
Publication Information
Publication: Advances in cryogenic engineering
Volume: 43 Pt B
ISSN: 0065-2482
Subject Category
Life Sciences (General)
Distribution Limits
Public
Copyright
Other
Keywords
NASA Discipline Life Sciences Technologies
Non-NASA Center

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