IIR document
Optimum thermodynamic conditions for upper pressure limits of transcritical carbon dioxide refrigeration cycle.
Author(s) : SRINIVASAN K., SHEAHEN P., SARATHY C. S. P.
Type of article: Article, IJR article
Summary
It is well known that the choice of upper pressure limit in a transcritical CO2 refrigeration cycle is independent of the gas cooler approach temperature. This is in contrast to sub-critical cycles, where the condensing pressure is invariably governed by the ambient conditions. The criteria used for limiting the upper pressure limit in a transcritical cycle are the state of maximum COP for a given set of evaporating and gas cooler exit temperatures. The latter is governed by the local ambient conditions and the possible approach. This paper provides a thermodynamic basis for the evaluation of this pressure for the case of ideal compression and with some compressors available in the market. In addition, it also provides an additional criterion that minimizes the cycle irreversibility which is predominantly due to gas throttling. This paper evaluates the pressure limits for these two criteria for some typical evaporating temperatures and ambient conditions. The possible compressor discharge temperatures in each case are calculated and criteria for two-stage compression are identified.
Available documents
Format PDF
Pages: pp. 1395-1401
Available
Public price
20 €
Member price*
Free
* Best rate depending on membership category (see the detailed benefits of individual and corporate memberships).
Details
- Original title: Optimum thermodynamic conditions for upper pressure limits of transcritical carbon dioxide refrigeration cycle.
- Record ID : 2010-1055
- Languages: English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 33 - n. 7
- Publication date: 2010/11
Links
See other articles in this issue (24)
See the source
Indexing
-
Themes:
Thermodynamics and changes of state;
CO2 - Keywords: Optimization; High pressure; Transcritical cycle; Thermodynamic cycle; COP; Refrigerant; CO2
-
Investigation on the optimal heat rejection pre...
- Author(s) : YANG J., MA Y., LI M., et al.
- Date : 2007/07/21
- Languages : English
- Source: ICR 2007. Refrigeration Creates the Future. Proceedings of the 22nd IIR International Congress of Refrigeration.
- Formats : PDF
View record
-
Ways of increasing the efficiency of gas-vapour...
- Author(s) : SHLÂHOVECKIJ V. M., SHLÂHOVECKIJ D. V.
- Date : 2001
- Languages : Russian
- Source: Vestnik Mezdunarodarnoj Akademii Holoda - n. 4
View record
-
Thermodynamic transition from subcritical to tr...
- Author(s) : SHAO L. L., ZHANG C. L.
- Date : 2016/04
- Languages : English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 64
- Formats : PDF
View record
-
Comparison and analysis of CO2 transcritical cy...
- Author(s) : FU L., LI Q., XU R.
- Date : 2007/09
- Languages : Chinese
- Source: Refrigeration - vol. 26 - n. 3
View record
-
Thermodynamic analysis of carbon dioxide cycles.
- Author(s) : VAISMAN I. B.
- Date : 2000/07/25
- Languages : English
- Source: Final proceedings of the 4th IIR-Gustav Lorentzen Conference on Natural Working Fluids at Purdue.
- Formats : PDF
View record