Correction de la méthode la moyenne logarithmique des différences de température et des relations efficacité-NTU pour le transfert de chaleur diphasique avec chute de pression et glissement de température.
Correction of log mean temperature difference method and effectiveness-NTU relations for two-phase heat transfer with pressure drop and temperature glide.
Numéro : pap. 2322
Auteurs : QIAO H.
Résumé
The Logarithmic Mean Temperature Difference (LMTD) method and the effectiveness-NTU method are the two important methods for design and analysis of heat exchangers. The derivation of these two methods relies on a critical assumption, i.e., the fluid specific heats are constant. Under special operating conditions where one fluid experiences condensation or evaporation at constant temperature, these two methods are still valid. In practice, however, the fluid temperature in heat exchangers will never remain constant during phase change because of pressure drop. Meanwhile, zeotropic refrigerant mixtures exhibit temperature variations even during a constant pressure phase change process. Therefore, both LMTD and effectiveness-NTU methods can introduce appreciable errors when applying to the cases in which refrigerant temperature change is not caused by heat transfer, rather than by pressure drop or temperature glide. This paper proposes modified LMTD method and effectiveness-NTU relations to remove the restriction of constant temperature phase change in the original approaches. The new methods account for the effects of pressure drop and temperature glide on the two-phase heat transfer process and make corresponding corrections based on simplifying assumptions. The new methods are applicable for both parallel-flow and counter-flow configurations, with phase change on one side. Rigorous error analyses indicate that the new approaches can substantially improve the thermal performance prediction for heat exchangers with large pressure drop and temperature glide.
Documents disponibles
Format PDF
Pages : 10
Disponible
Prix public
20 €
Prix membre*
15 €
* meilleur tarif applicable selon le type d'adhésion (voir le détail des avantages des adhésions individuelles et collectives)
Détails
- Titre original : Correction of log mean temperature difference method and effectiveness-NTU relations for two-phase heat transfer with pressure drop and temperature glide.
- Identifiant de la fiche : 30024495
- Langues : Anglais
- Source : 2018 Purdue Conferences. 17th International Refrigeration and Air-Conditioning Conference at Purdue.
- Date d'édition : 09/07/2018
Liens
Voir d'autres communications du même compte rendu (252)
Voir le compte rendu de la conférence
Indexation
-
Updated model for two phase frictional pressure...
- Auteurs : DEL COL D., BISETTO A., BORTOLATO M., et al.
- Date : 25/10/2012
- Langues : Anglais
- Source : RCR 2012. 3rd IIR Workshop on Refrigerant Charge Reduction in Refrigerating Systems: Valencia, Spain, October 25-26, 2012.
- Formats : PDF
Voir la fiche
-
Falling film flow and evaporation characteristi...
- Auteurs : HU H., DING C., LI J., et al.
- Date : 22/06/2016
- Langues : Anglais
- Source : 1st IIR International Conference of Cryogenics and Refrigeration Technology (ICCRT 2016). Proceedings: Bucharest, Romania, June 22-25, 2016.
- Formats : PDF
Voir la fiche
-
Designing and testing an air PCM heat exchanger...
- Auteurs : DECHESNE B., GENDEBIEN S., MARTENS J., et al.
- Date : 14/07/2014
- Langues : Anglais
- Source : 2014 Purdue Conferences. 15th International Refrigeration and Air-Conditioning Conference at Purdue.
- Formats : PDF
Voir la fiche
-
Simplified correlation equations of heat transf...
- Auteurs : HAMMAD M., TARAWNEH M., ALSHQIRATE A.
- Date : 10/09/2012
- Langues : Anglais
- Source : 4th Jordanian IIR International Conference on Refrigeration and Air Conditioning. Proceedings: Amman, Jordan, September 10-12, 2012.
- Formats : PDF
Voir la fiche
-
Flow boiling heat transfer characteristics of w...
- Auteurs : YANG C., NAWAZ K., GEHL A.
- Date : 2022
- Langues : Anglais
- Source : 2022 Purdue Conferences. 19th International Refrigeration and Air-Conditioning Conference at Purdue.
- Formats : PDF
Voir la fiche