DocumentCode :
121527
Title :
Modeling and comparative analysis of jet impingement cooling and conventional channel cooling for photovoltaic strings
Author :
Bahaidarah, Haitham M. S. ; Baloch, Ahmer A. B. ; Gandhidasan, Palanichamy
Author_Institution :
Center of Res. Excellence in Renewable Energy, King Fahd Univ. of Pet. & Miner., Dhahran, Saudi Arabia
fYear :
2014
fDate :
8-13 June 2014
Abstract :
A cooling technique for photovoltaic (PV) string based on jet impingement device is proposed in this study to eliminate non-uniform cooling across the surface of the PV panel. Non- uniformity on the PV panel arises due to the uneven solar flux distribution and temperature variations across the cell. This study identifies water jet impingement cooling as a promising solution to provide uniform cooling of PV panels for the climatic data of Middle Eastern region. The complete cooling model incorporates optical, radiation, thermal, electrical and jet cooling model for the overall performance analysis of the PV system. Jet impingement cooling model for PV string is developed in this paper to carry out the heat transfer analysis for single and multiple jet nozzles to predict the cell temperature, power output and conversion efficiency of PV strings. Detailed thermal model based on energy balance approach is also developed to assess the effect of cell temperature on the PV string using average heat transfer correlations. Finally, a comparative analysis is carried out for rectangular channel heat exchanger and jet cooling of PV strings subjected to the conditions of Dhahran. The results reveal that the jet cooling has higher efficiency, minimum cell temperature and temperature uniformity.
Keywords :
cooling; nozzles; solar cells; Middle Eastern region; PV panel; PV string; average heat transfer correlations; cell temperature prediction; channel cooling technique; climatic data; conversion efficiency; energy balance approach; heat transfer analysis; jet impingement device; multiple jet nozzles; nonuniform cooling; performance analysis; photovoltaic strings; power output; rectangular channel heat exchanger; single jet nozzles; solar flux distribution; temperature uniformity; temperature variations; thermal model; water jet impingement cooling technique; Analytical models; Cooling; Heat transfer; Heating; Mathematical model; Photovoltaic cells; Temperature distribution; cooling; jet impingement; modeling; photovoltaic cells; thermal management;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photovoltaic Specialist Conference (PVSC), 2014 IEEE 40th
Conference_Location :
Denver, CO
Type :
conf
DOI :
10.1109/PVSC.2014.6925028
Filename :
6925028
Link To Document :
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