Investigations on mixture preparation for two phase adiabatic pressure drop of R134a flowing in 5 mm diameter channel
Abstract
The article presents detailed two-phase adiabatic pressure drops data for refrigerant R134a. Study cases have been set for a mass flux varying from 200 to 400 kg/m2 s, at the saturation temperature of 19.4 ◦C. Obtained experimental data was compared with the available correlations from the literature for the frictional pressure drop during adiabatic flow. Influence of mixture preparation on pressure drop was investigated, for varying inlet subcooling temperature in the heated section. The flow patterns have also been obtained by means of a high-speed camera placed in the visualization section and compared with literature observations .
Citations
-
6
CrossRef
-
0
Web of Science
-
7
Scopus
Authors (3)
Cite as
Full text
- Publication version
- Accepted or Published Version
- DOI:
- Digital Object Identifier (open in new tab) 10.1515/aoter-2017-0018
- License
- open in new tab
Keywords
Details
- Category:
- Articles
- Type:
- artykuły w czasopismach recenzowanych i innych wydawnictwach ciągłych
- Published in:
-
Archives of Thermodynamics
no. 38,
edition 3,
pages 101 - 118,
ISSN: 1231-0956 - Language:
- English
- Publication year:
- 2017
- Bibliographic description:
- Muszyński T., Andrzejczyk R., Dorao C. A.: Investigations on mixture preparation for two phase adiabatic pressure drop of R134a flowing in 5 mm diameter channel// Archives of Thermodynamics. -Vol. 38., iss. 3 (2017), s.101-118
- DOI:
- Digital Object Identifier (open in new tab) 10.1515/aoter-2017-0018
- Verified by:
- Gdańsk University of Technology
seen 141 times
Recommended for you
Detailed experimental investigations on frictional pressure drop of R134a during flow boiling in 5 mm diameter channel: The influence of acceleration pressure drop component =Études expérimentales détaillées sur la chute de pression frictionnelle du R134a lors de l'ébullition en écoulement dans un canal de 5 mm de diamètre : influence de la composante d'accélération de la chute de pression
- T. Muszyński,
- R. Andrzejczyk,
- C. A. Dorao