DocumentCode
2813724
Title
Experimental investigation on heat transfer and flow resistance characteristics of spirally fluted tubes
Author
Cao, Kan ; Dong, Qiwu ; Liu, Minshan ; Zhang, Lina
Author_Institution
Thermal Energy Eng. Res. Centre, Zhengzhou Univ., Zhengzhou, China
fYear
2011
fDate
15-17 July 2011
Firstpage
4956
Lastpage
4959
Abstract
A comparative experimental investigation was carried out for heat transfer and resistance characteristics of smooth tube and 9 spirally fluted tubes with various structural parameters. The results show that the heat transfer and flow resistance performances of spirally fluted tubes are better than smooth tube. The heat transfer coefficient of the spirally fluted tubes are as 2.46~3.08 times as the smooth tube´s. The flow resistance coefficient of the fluted tubes are as 2.1~7 times as the plain tube. The correlations with relatively high precision have been obtained regarding heat transfer coefficient and resistance factor of the mentioned fluted tubes by adopting a multivariable linear regression method. This paper also analyzes the main influence factors of heat transfer and flow characteristics of spirally fluted tubes and points out that using small pitch and groove depth can obtain better heat transfer effect.
Keywords
heat transfer; pipe flow; regression analysis; flow resistance characteristics; flow resistance coefficient; flow resistance performance; groove depth; heat transfer characteristics; heat transfer coefficient; heat transfer effect; heat transfer performance; multivariable linear regression method; pitch; plain tube; resistance factor; smooth tube; spirally fluted tubes; structural parameters; Chemical industry; Electron tubes; Fluids; Friction; Heat transfer; Resistance; Resistance heating; Experimental investigation; Heat transfer enhancement; Resistance factor; Spirally fluted tube;
fLanguage
English
Publisher
ieee
Conference_Titel
Mechanic Automation and Control Engineering (MACE), 2011 Second International Conference on
Conference_Location
Hohhot
Print_ISBN
978-1-4244-9436-1
Type
conf
DOI
10.1109/MACE.2011.5988127
Filename
5988127
Link To Document