Document IIF
Etude expérimentale de l'influence des caractéristiques de la surface interne sur les coefficients de transfert de chaleur lors de l'ébullition en écoulement du dioxyde de carbone dans un tube horizontal.
Experimental study of the influence of the inside surface characteristics on the carbon dioxide flow boiling heat transfer coefficient in a horizontal tube.
Auteurs : HASHIMOTO K., KIYOTANI A., SASAKI N.
Résumé
The CO2 heat pump water heater "ECO CUTE", which was commercialized in 2001, has a significant potential for energy conservation and greenhouse abatement. Shipments in fiscal 2007 expanded to 413 000 units. In order to encourage the broader use of "ECO CUTE", there is a need to develop a more compact and higher efficiency heat pump unit. The key element of the apparatus is always the evaporator. CRIEPI and Sumitomo Light Metal, Ltd. have studied CO2 flow boiling heat transfer coefficient experimentally. In the previous report, mean heat flux was understood as being equivalent to mass velocity in significantly affecting the mean evaporating heat transfer coefficient (99.999% purity, without oil) in a horizontal smooth tube (outer diameter 6 mm, thickness 0.4 mm). In this report, the heat transfer coefficient and pressure drop of a smooth tube and 3 kinds of grooved tubes are measured. The test conditions are: CO2 mass velocity from about 160 to about 660 kg/(m2s) (heat flux from about 10 to about 40 kW/m2), pressures of CO2 3.5, 4.0 and 4.5 MPa (saturation temperatures of 0, 5 and 10°C, respectively), tube lengths of 3.0 and 4.0 m, quality at the inlet of the test section of 0.17 and CO2 super heat at the outlet of test section of 5 K. Consequently, it is understood that the heat transfer coefficient of grooved tubes is higher than that of the smooth tube and in the higher mass velocity region, the heat transfer coefficient does not go below 400 kg/m2.s. The difference in the heat transfer coefficient caused by the groove features is not clear.
Documents disponibles
Format PDF
Pages : 2008-2
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 : Experimental study of the influence of the inside surface characteristics on the carbon dioxide flow boiling heat transfer coefficient in a horizontal tube.
- Identifiant de la fiche : 2009-0073
- Langues : Anglais
- Source : 8th IIR-Gustav Lorentzen Conference on Natural Working Fluids (GL2008)
- Date d'édition : 07/09/2008
Liens
Voir d'autres communications du même compte rendu (132)
Voir le compte rendu de la conférence
Indexation
-
Thèmes :
Transfert de chaleur;
CO2 - Mots-clés : Tube horizontal; Comparaison; Tube microailette; Mesure; Transfert de chaleur; Tube lisse; Pompe à chaleur; Experimentation; Évaporateur; Ébullition; CO2; Chute de pression
-
Heat transfer and pressure drop during evaporat...
- Auteurs : COLOMBO L., MUZZIO A., NIRO A.
- Date : 02/08/2005
- Langues : Anglais
- Source : Commercial Refrigeration. Thermophysical Properties and Transfer Processes of Refrigerants. Proceedings of the IIR International Conferences.
- Formats : PDF
Voir la fiche
-
CO2 and R-410A flow boiling heat transfer and p...
- Auteurs : PARK C. Y., HRNJAK P. S.
- 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
-
Experimental investigation for flow boiling of ...
- Auteurs : KOYAMA S., ITO D., LEE S. M., et al.
- Date : 02/08/2005
- Langues : Anglais
- Source : Commercial Refrigeration. Thermophysical Properties and Transfer Processes of Refrigerants. Proceedings of the IIR International Conferences.
- Formats : PDF
Voir la fiche
-
Strömungsverdampfung von CO2 in glatten und inn...
- Auteurs : SCHAEL A. E., KIND M.
- Date : 01/2006
- Langues : Allemand
- Source : KI Luft Kältetech. - vol. 42 - n. 1-2
Voir la fiche
-
Boiling heat transfer of HFO-1234yf flowing in ...
- Auteurs : SAITOH S., DANG C., NAKAMURA Y., et al.
- Date : 12/2011
- Langues : Anglais
- Source : International Journal of Refrigeration - Revue Internationale du Froid - vol. 34 - n. 8
- Formats : PDF
Voir la fiche