Recently, considerable research efforts have been made to search substitution technologies for chlorofluorocarbon-based vapor compression cycles due to the concern over environmental issues. This letter introduces a helium-based thermoacoustic refrigeration system, which is a thermoacoustic-Stirling refrigerator driven by a thermoacoustic-Stirling heat engine, for domestic refrigeration purpose. In the regenerators of both the refrigerator and the prime mover, helium gas experiences near to reversible high efficiency Stirling process. At the operating point with mean pressure, frequency, and heat input, the experimental cooler provides a lowest temperature of and cooling power at . These results show good potential of the system to be an alternative in near future for domestic refrigeration with advantages of environment-friendliness, no moving parts, and heat driven mechanism.
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13 February 2006
Research Article|
February 17 2006
Thermoacoustically driven refrigerator with double thermoacoustic-Stirling cycles
Ercang Luo;
Ercang Luo
a)
Technical Institute of Physics and Chemistry,
Chinese Academy of Sciences
, Beijing 100080, China
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Wei Dai;
Wei Dai
Technical Institute of Physics and Chemistry,
Chinese Academy of Sciences
, Beijing 100080, China
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Yong Zhang;
Yong Zhang
Graduate School of Chinese Academy of Sciences
, Beijing 100049, China
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Hong Ling
Hong Ling
Graduate School of Chinese Academy of Sciences
, Beijing 100049, China
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a)
Electronic mail: [email protected]
Appl. Phys. Lett. 88, 074102 (2006)
Article history
Received:
June 03 2005
Accepted:
January 03 2006
Citation
Ercang Luo, Wei Dai, Yong Zhang, Hong Ling; Thermoacoustically driven refrigerator with double thermoacoustic-Stirling cycles. Appl. Phys. Lett. 13 February 2006; 88 (7): 074102. https://doi.org/10.1063/1.2176855
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