LAPSE:2023.26720
Published Article
LAPSE:2023.26720
Design and Performance Test of 2 kW Class Reverse Brayton Cryogenic System
Keuntae Lee, Deuk-Yong Koh, Junseok Ko, Hankil Yeom, Chang-Hyo Son, Jung-In Yoon
April 3, 2023
With the increased commercialization of high-temperature superconducting (HTS) power cables cooled using liquid nitrogen and the use of liquefied natural gas as fuel, the need for large-capacity reverse Brayton cryogenic systems is gradually increasing. In this paper, the thermodynamic design of a reverse Brayton cryogenic system with a cooling capacity of the 2 kW class at 77 K using neon as a refrigerant is described. Unlike conventional reverse Brayton systems, the proposed system uses a cryogenic turbo-expander, scroll compressor, and plate-type heat exchanger. The performance test conducted on the fabricated system is also described. The isentropic efficiency of the cryogenic turbo-expander was measured to be 86%, which is higher than the design specification. The effectiveness of the heat exchanger and the flow rate and operating pressure of the refrigerant were found to be lower than the design specifications. Consequently, the refrigeration capacity of the fabricated reverse Brayton cryogenic system was measured to be 1.23 kW at 77 K. In the future, we expect to achieve the targeted refrigeration capacity through further improvements. In addition, the faster commercialization of HTS power cables and more efficient storage of liquefied natural gas will be realized.
Keywords
cooling system, cryogenic, HTS power cable, Liquified Natural Gas, reverse Brayton cycle
Suggested Citation
Lee K, Koh DY, Ko J, Yeom H, Son CH, Yoon JI. Design and Performance Test of 2 kW Class Reverse Brayton Cryogenic System. (2023). LAPSE:2023.26720
Author Affiliations
Lee K: LNG and Cryogenic Technology Center, Korea Institute of Machinery & Materials, Gimhae 50963, Korea
Koh DY: LNG and Cryogenic Technology Center, Korea Institute of Machinery & Materials, Gimhae 50963, Korea
Ko J: Department of Energy Conversion Systems, Korea Institute of Machinery & Materials, Daejeon 34103, Korea
Yeom H: Department of Energy Conversion Systems, Korea Institute of Machinery & Materials, Daejeon 34103, Korea
Son CH: Department of Refrigeration and Air-Conditioning Engineering, Pukyong National University, Pusan 48513, Korea
Yoon JI: Department of Refrigeration and Air-Conditioning Engineering, Pukyong National University, Pusan 48513, Korea
Journal Name
Energies
Volume
13
Issue
19
Article Number
E5089
Year
2020
Publication Date
2020-09-29
Published Version
ISSN
1996-1073
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PII: en13195089, Publication Type: Journal Article
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doi:10.3390/en13195089
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