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Numerical investigations of solar cell temperature for photovoltaic concentrator system with and without passive cooling arrangements
Authors:Sendhil Kumar Natarajan  Tapas Kumar Mallick  Matty Katz  Simon Weingaertner
Affiliation:aDepartment of Mechanical Engineering, School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh EH14 4AS, United Kingdom;bSolecta Ltd, 8 HaEshel Street, P.O.B 3016, Caesarea 38900, Israel;cIMOS Gubela GmbH, Kniebisstrasse 1, 77876 Rechnen, Germany
Abstract:The numerical study of solar cell temperature for concentrating PV with concentration ratio of 10× is presented in this paper. A two dimensional thermal model has been developed to predict the temperature for PV concentrator system (solar cell and lens) with and without passive cooling arrangements. Based on a thermal model, the result shows that maximum of four numbers of uniform fins of 5 mm height and 1 mm thickness can be effectively used to reduce the solar cell temperature. In addition to that, the effects of ambient temperature and solar radiation intensity on the solar cell temperature have also been investigated for the system with and without cooling fins. Based on the influencing parameters of ambient temperature and solar radiation, two separate solar cell temperature correlations has been proposed for systems with and without cooling fins to predict the cell temperature for the range of given parameters. In our previous studies, the present 2-D model was extensively validated with a comprehensive unified model 8], 9] and 10].
Keywords:PV concentrator  Cooling fins  Solar cell temperature  Cell temperature correlation
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