Résumé
Isothermal compression, a technology that can ideally minimize compression work in a refrigeration cycle, can be realized by removing the heat from compression process. The concept of isothermal compression can be accomplished by multi-stage compression and intercooling processes coupled with heat exchanger, and the outdoor air is used for the intercooling. It has been applied to gas compressors for cryogenic refrigeration, but in vapor compression like general heat pumps, the condensation occurs during the compression and cooling process. In this study, the work reduction impact of isothermal compression on the heat pump cycle by simulating multi-stage compression with interstage cooling, emulating an isothermal compression process. The analysis was based on a conventional heat pump cycle, and separate operating points were considered for cooling and heating modes to design the cycle operation. The results showed that compressor power consumption could be reduced in both cooling and heating modes. In cooling mode, the work decreased by approximately 5.9%, leading to an improvement in cycle performance by up to 7.8%. However, in the heating mode, while compressor cooling reduced power consumption (approximately 7%), the capacity of the condenser decreased, resulting in a degradation of COP by approximately 5%.
Documents disponibles
Format PDF
Pages : 6
Disponible
Prix public
20 €
Prix membre*
Gratuit
* meilleur tarif applicable selon le type d'adhésion (voir le détail des avantages des adhésions individuelles et collectives)
Détails
- Titre original : Theoretical study on isothermal compression technology in refrigeration cycle.
- Identifiant de la fiche : 30031420
- Langues : Anglais
- Sujet : Technologie
- Source : Proceedings of the 26th IIR International Congress of Refrigeration: Paris , France, August 21-25, 2023.
- Date d'édition : 21/08/2023
- DOI : http://dx.doi.org/10.18462/iir.icr.2023.0507
Liens
Voir d'autres communications du même compte rendu (491)
Voir le compte rendu de la conférence
Indexation
-
Improved vapour compression refrigeration cycle...
- Auteurs : MINH N. Q., HEWITT N. J., EAMES P. C.
- Date : 17/07/2006
- Langues : Anglais
- Source : 2006 Purdue Conferences. 18th International Compressor Engineering Conference at Purdue & 11th International Refrigeration and Air-Conditioning Conference at Purdue [CD-ROM].
- Formats : PDF
Voir la fiche
-
Development of a Vuilleumier cycle heat pump fo...
- Auteurs : ISHIHARA T., KUROSAWA Y., IKUMI Y., MATSUE J.
- Date : 22/09/1996
- Langues : Anglais
- Source : Heat pumping technologies towards the next century: applications and markets. Proceedings of the 5th IEA Conference.
Voir la fiche
-
Advanced absorption heat pump cycles.
- Auteurs : FURUTERA M., ORIGANE T., SAWADA T., KUNUGI Y., KASHIWAGI T., TAKEI T., AIZAWA M., MORI H.
- Date : 17/09/1996
- Langues : Anglais
- Source : Ab-sorption 96. Towards sustainable technologies. Proceedings./ Ab-sorption 96. Vers les technologies durables. Comptes rendus.
Voir la fiche
-
Coabsorbent technology for heat pump applications.
- Auteurs : STAICOVICI M. D.
- Date : 21/08/2007
- Langues : Anglais
- Source : ICR 2007. Refrigeration Creates the Future. Proceedings of the 22nd IIR International Congress of Refrigeration.
- Formats : PDF
Voir la fiche
-
Thermodynamic cycle analysis and experimental i...
- Auteurs : ZHAO H., LEI P., HUANG Y., et al.
- Date : 24/08/2019
- Langues : Anglais
- Source : Proceedings of the 25th IIR International Congress of Refrigeration: Montréal , Canada, August 24-30, 2019.
- Formats : PDF
Voir la fiche