IIR document
Condensation heat transfer of R134a, R1234ze(E) and R290 on horizontal plain and enhanced titanium tubes.
Author(s) : JI W. T., CHONG G H., ZHAO C. Y., et al.
Type of article: Article, IJR article
Summary
An experimental investigation on the condensation of R134a, R1234ze(E) and R290 outside plain and enhanced titanium tubes was conducted. The saturation temperature in the experiments was 35 °C to 40 °C, and heat flux was in the range of 8–80 kW/m2. Effects of heat flux, refrigerant and saturation temperature on heat transfer were investigated. The heat transfer enhancement ratio of overall heat transfer coefficient decreased with increasing heat flux. It was found that the condensing heat transfer coefficient of R134a, compared with R1234ze(E) and R290, was the largest for plain and enhanced tubes. Saturation temperature had minor effect on condensing heat transfer coefficient for R134a, R1234ze(E) and R290 for plain tube. The effect of saturate temperature on the condensing heat transfer of R134a and R1234ze(E) was even negligible for enhanced tube. While, the condensing heat transfer coefficient of R290 for enhanced tube was increasing with increment of saturation temperature. Experimental condensing heat transfer coefficient were also compared with five predicting models for low-fin tube. It showed that the model of Briggs–Rose gave a better prediction result for R134a and R1234ze(E), while the model underestimated the experimental result for R290.
Available documents
Format PDF
Pages: 259-268
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: Condensation heat transfer of R134a, R1234ze(E) and R290 on horizontal plain and enhanced titanium tubes.
- Record ID : 30024688
- Languages: English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 93
- Publication date: 2018/09
- DOI: http://dx.doi.org/10.1016/j.ijrefrig.2018.06.013
Links
See other articles in this issue (25)
See the source
Indexing
-
Themes:
HFCs;
Heat transfer;
Hydrocarbons - Keywords: R134a; Tube; Heat transfer; Titanium; R290; R1234ze(E); Expérimentation; Condensation
-
The comparison of condensation heat transfer an...
- Author(s) : WEN J., GU X., WANG S., et al.
- Date : 2018/08
- Languages : English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 92
- Formats : PDF
View record
-
Experimental study on flow boiling heat transfe...
- Author(s) : YANG Z. Q., CHEN G. F., YAO Y., et al.
- Date : 2018/01
- Languages : English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 85
- Formats : PDF
View record
-
Experimental study on flow boiling heat transfe...
- Author(s) : YANG Z. Q., CHEN G. F., ZHAO Y. X., et al.
- Date : 2018/09
- Languages : English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 93
- Formats : PDF
View record
-
Condensation heat transfer of R1234ze(E) and R1...
- Author(s) : CATTELAN G., DIANI A., AZZOLIN M.
- Date : 2022/11
- Languages : English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 143
- Formats : PDF
View record
-
Condensation heat transfer of R1234ze(E) and it...
- Author(s) : AZZOLIN M., BERTO A., BORTOLIN S., DEL COL D.
- Date : 2022/05
- Languages : English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 137
- Formats : PDF
View record