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  4. Energy yield assessment of a high concentration photovoltaic receiver based on simulated spectra from typical meteorological year datasets
 
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2016
Conference Paper
Title

Energy yield assessment of a high concentration photovoltaic receiver based on simulated spectra from typical meteorological year datasets

Abstract
The performance of High Concentration Photovoltaic (HCPV) receivers is influenced by changes in the solar spectrum and operating solar cell temperature (Tcell). Since the solar spectrum is affected by the variation of air mass (AM), aerosol optical depth (AOD) and precipitable water (PW), it is important to investigate their impact on the performance of HCPV receivers. It is also known that the direct normal irradiance (DNI) and ambient temperature (Tamb) are dominant factors that can influence the operating Tcell. In this study, Class I data from the NREL's typical meteorological year (TMY3) database are used in order to predict the energy yield (Eyield) of a HCPV receiver in two USA sites with relatively high annual direct normal irradiation; Las Vegas, NV and Tucson, AZ. The results show that, although the annual average Tcell in Tucson is higher by 1.8°C and the number of ""sunny hours"" are 20 less than Las Vegas, the Eyield is still higher by 1.6%. The annual spectral losses in Las Vegas and Tucson were found to be 5% and 3% respectively.
Author(s)
Theristis, M.
Fernández, E.F.
Ferrer-Rodriguez, J.P.
Stark, C.
O'Donovan, T.S.
Mainwork
12th International Conference on Concentrator Photovoltaic Systems, CPV 2016  
Conference
International Conference on Concentrator Photovoltaic Systems (CPV) 2016  
DOI
10.1063/1.4962115
Additional link
Full text
Language
English
CSE  
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