Summary
This paper presents a novel ejector-absorption combined refrigeration cycle. When the temperature of the heat source is high enough, this cycle will work as a double-effect cycle. If the temperature of the heat source is lower than required temperature of heat source used to drive conventional double-effect absorption refrigeration cycle but much higher than required temperature of heat source used to drive conventional single-effect absorption refrigeration cycle, the COP of new cycle will also be higher than that of conventional single-effect absorption refrigeration cycle. Simulation results show that the COP of the cycle is 30% higher than that of the conventional single-effect absorption refrigeration cycle at some working conditions even in the later case.
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Details
- Original title: A novel ejector-absorption combined refrigeration cycle.
- Record ID : 30001658
- Languages: English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 34 - n. 7
- Publication date: 2011/11
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Combined ejector-absorption cycle technology fo...
- Author(s) : EAMES I. W., GEORGHIADES M., TUCKER R. J., APHORNRATANA S., WU S.
- Date : 1996/09/17
- Languages : English
- Source: Ab-sorption 96. Towards sustainable technologies. Proceedings./ Ab-sorption 96. Vers les technologies durables. Comptes rendus.
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Absorption-ejector hybrid refrigeration cycle p...
- Author(s) : GU Z. L., FENG S. Y., YU Y. Z.
- Date : 1996/09/17
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- Source: Ab-sorption 96. Towards sustainable technologies. Proceedings./ Ab-sorption 96. Vers les technologies durables. Comptes rendus.
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- Author(s) : SMITH S. J., RIFFAT S. B., WU S., et al.
- Date : 1997/10/05
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- Source: CIBSE National Conference 1997. Proceedings.
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Experimental investigation of a combined ejecto...
- Author(s) : APHORNRATANA S., EAMES I. W.
- Date : 1998/03
- Languages : English
- Source: Int. J. Energy Res. - vol. 22 - n. 3
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Performance characteristics of two combined eje...
- Author(s) : ALEXIS G. K., ROGDAKIS E. D.
- Date : 2002/01
- Languages : English
- Source: Applied Thermal Engineering - vol. 22 - n. 1
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