Operating performance of novel reverse-cycle defrosting method based on thermal energy storage for air source heat pump

Author:

Dong Jian-kai,Jiang Yi-qiang,Yao Yang,Zhang Xue-dan

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference18 articles.

1. BYUN J S, LEE J, JEON C D. Frost retardation of an air-source heat pump by the hot gas bypass method [J]. International Journal of Refrigeration, 2002, 25: 405–413.

2. KONDEPUDI S N, O’NEAL D L. Effect of different fin configuration on the performance of finned-tube heat exchanger under frosting conditions [J]. ASHRAE Transactions, 1990, 96(2): 439–444.

3. KONDEPUDI S N, O’NEAL D L. Frosting performance of tube fin heat exchanger with wavy and corrugated fins [J]. Experimental Thermal and Fluid Science, 1991, 4: 613–618.

4. O’NEAL D L, PETERSON K T, ANAND N K, SCHLIESING J S. Refrigeration system dynamics during the reversing cycle defrosting [J]. ASHRAE Transaction, 1989, 95: 689–698.

5. PAYNE V, O’NEAL D L. Defrost cycle performance for an air-source heat pump with a scroll and a reciprocating compressor [J]. International Journal of Refrigeration, 1995, 18: 107–112.

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