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  4. Experimental validation of a heat transfer model for concentrating photovoltaic system
 
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2012
Journal Article
Title

Experimental validation of a heat transfer model for concentrating photovoltaic system

Abstract
In this paper, a three dimensional heat transfer model is presented for a novel concentrating photovoltaic design for Active Solar Panel Initiative System (ASPIS). The concentration ratio of two systems (early and integrated prototype) are 5× and 10× respectively, designed for roof-top integrated Photovoltaic systems. ANSYS 12.1, CFX package was effectively used to predict the temperatures of the components of the both ASPIS systems at various boundary conditions. The predicted component temperatures of an early prototype were compared with experimental results of ASPIS, which were carried out in Solecta - Israel and at the Austrian Institute of Technology (AIT) - Austria. It was observed that the solar cell and lens temperature prediction shows good agreement with Solecta measurements. The minimum and maximum deviation of 3.8% and 17.9% were observed between numerical and Solecta measurements and the maximum deviations of 16.9% were observed between modeling and AIT me asurements. Thus, the developed validated thermal model enables to predict the component temperatures for concentrating photovoltaic systems.
Author(s)
Natarajan, Sendhil Kumar
Department of Mechanical Engineering, Heriot-Watt University Edinburgh
Katz, Matty
Solecta Ltd.
Ebner, Rita
Austrian Institute of Technology, Energy Department, Austria
Weingärtner, Simon
IMOS-Gubela Industrieoptik
Aßländer, Ortrun
DAY4-ecotec
Cole, Alex
NaREC, United Kingdom
Wertz, Roland
Giesen, Tim
Mallick, Tapas Kumar
Department od Mechanical Engineering, Heriot-Watt University Edinburgh
Journal
Applied thermal engineering  
Open Access
DOI
10.1016/j.applthermaleng.2011.09.031
Additional link
Full text
Language
English
Fraunhofer-Institut für Produktionstechnik und Automatisierung IPA  
Keyword(s)
  • solar cell

  • heat transfer

  • Solarmodul

  • Wärmetransport

  • Photovoltaik

  • Solarzelle

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