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Evaluation of DNI forecast based on the WRF mesoscale atmospheric model for CPV applications
Author(s) -
Vicente Lara-Fanego,
José A. RuizArias,
David PozoVázquez,
Christian A. Gueymard,
J. TovarPescador
Publication year - 2012
Publication title -
aip conference proceedings
Language(s) - English
Resource type - Conference proceedings
SCImago Journal Rank - 0.177
H-Index - 75
eISSN - 1551-7616
pISSN - 0094-243X
DOI - 10.1063/1.4753895
Subject(s) - mesoscale meteorology , weather research and forecasting model , environmental science , solar resource , meteorology , irradiance , atmospheric model , solar irradiance , numerical weather prediction , range (aeronautics) , sky , solar energy , remote sensing , computer science , aerospace engineering , geography , engineering , physics , quantum mechanics , electrical engineering
The integration of large-scale solar electricity production into the energy supply structures depends es-sentially on the precise advance knowledge of the available resource. Numerical weather prediction (NWP) models provide a reliable and comprehensive tool for short-and medium-range solar radiation forecasts. The methodology followed here is based on the WRF model. For CPV systems the primary energy source is the direct normal irradi-ance (DNI), which is dramatically affected by the presence of clouds. Therefore, the reliability of DNI forecasts is directly related to the accuracy of cloud information. Two aspects of this issue are discussed here: (i) the effect of the model’s horizontal spatial resolution; and (ii) the effect of the spatial aggregation of the predicted irradiance. Results show that there is no improvement in DNI forecast skill at high spatial resolutions, except under clear-sky conditions. Furthermore, the spatial averaging of the predicted irradiance noticeably reduces their initial e...

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