DocumentCode :
2928006
Title :
Heat Transfer Performances of Molten Salt in Spirally Grooved Solar Receiver Tube
Author :
Lu JianFeng ; Shen Xiangyang ; Ding Jing ; Yang Xiaoxi
Author_Institution :
Sch. of Eng., Sun Yat-Sen Univ., Guangzhou, China
fYear :
2011
fDate :
25-28 March 2011
Firstpage :
1
Lastpage :
4
Abstract :
Solar heat receiver is currently one of the important research topics of renewable energy. In present article, experimental measurements and numerical analyses are conducted to investigate the heat transfer performances of high temperature molten salt in spirally grooved solar receiver tube. The molten salt is used as a working medium to study the heat transfer coefficients of spirally grooved solar receiver tube on the heat transfer platform. Experimental results indicated that the spirally grooved tubes can evidently enhance heat transfer, and its heat transfer coefficient increase with the grooved height and Reynolds number. According to the simulation results, the heat transfer coefficient rises with Reynolds number, while the hydraulic resistance coefficient drops quickly. The flow field in the spirally grooved tube periodically develops along the flow, and the circumrotating flow plays an important role in heat transfer. Above the groove, the flow and thermal boundary layers are obviously reduced. As a result, the groove height increment can obviously benefit heat transfer of solar receiver, and that has a good agreement with experimental results.
Keywords :
boundary layers; heat transfer; numerical analysis; solar power; Reynolds number; heat transfer performances; high temperature molten salt; hydraulic resistance coefficient; numerical analyses; spirally grooved solar receiver tube; thermal boundary layers; Electron tubes; Heat transfer; Receivers; Resistance heating; Solar heating; Temperature distribution; Temperature measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power and Energy Engineering Conference (APPEEC), 2011 Asia-Pacific
Conference_Location :
Wuhan
ISSN :
2157-4839
Print_ISBN :
978-1-4244-6253-7
Type :
conf
DOI :
10.1109/APPEEC.2011.5748443
Filename :
5748443
Link To Document :
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