DocumentCode :
149309
Title :
Experimental validation of the thermal performance of a concentrating photovoltaic/thermal system
Author :
Chaabane, Mohamed ; Mhiri, Hatem ; Bournot, Philippe
Author_Institution :
Unite de Thermique et Thermodynamique des Procedes Ind., Ecole Nat. d´Ing. de Monastir, Monastir, Tunisia
fYear :
2014
fDate :
25-27 March 2014
Firstpage :
1
Lastpage :
6
Abstract :
In this paper, an experimental study of a concentrating photovoltaic/thermal system is carried out in a spring day of the Tunisian Saharan city Tozeur and this solar system thermal performance is evaluated for two water mass flow rates. A 3D CFD model interpreting this photovoltaic/thermal system is then developed and used to predict the temperature of the different components of this hybrid system. Numerical results of the water outlet temperature and PVT system thermal efficiency are compared to the experimental data and a good agreement is seen proving the validity of the developed CFD model. The temperature contours are also presented for different instants of the day, helping to understand the different phenomenon related to the photovoltaic/thermal conversion of the solar energy using this concentrating system.
Keywords :
computational fluid dynamics; hybrid power systems; photovoltaic power systems; solar energy concentrators; thermal power stations; 3D CFD model; PVT system; Tozeur; Tunisian Saharan city; concentrating photovoltaic-thermal system; hybrid system; photovoltaic-thermal conversion; solar energy; solar system; spring day; temperature contours; thermal performance; water mass flow rates; water outlet temperature; Computational fluid dynamics; Numerical models; Photovoltaic cells; Photovoltaic systems; Temperature measurement; Water heating; CFD simulation; Concentrating photovoltaic/thermal (CPVT) system; experimental characterization; thermal performance;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Renewable Energy Congress (IREC), 2014 5th International
Conference_Location :
Hammamet
Print_ISBN :
978-1-4799-2196-6
Type :
conf
DOI :
10.1109/IREC.2014.6826995
Filename :
6826995
Link To Document :
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