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The role of aerosol models of the SMARTS code in predicting the spectral direct-beam irradiance in an urban area

D.G. Kaskaoutis and H.D. Kambezidis

Renewable Energy, 2008, vol. 33, issue 7, 1532-1543

Abstract: Measurements of the ground-level spectral distribution of the direct-beam solar irradiance between 300 and 1000nm were made in Athens, Greece, in May 1995. Results obtained using simple model for the atmospheric radiative transfer of sunshine (SMARTS) (version 2.9.2) parametric model for the urban atmosphere of Athens are analyzed and compared to the ground-level experimental spectral solar irradiance measurements obtained by the passive pyrheliometric scanner (PPS) in three discrete bands, UV (320–400nm), VIS (400–700nm) and NIR (700–1000nm). The study uses two different input parameters for the aerosol characterization: the aerosol optical depth at 500nm, tα0.5, and the Ångström turbidity coefficient, β. The results clearly show that the nine aerosol models implemented in the SMARTS code lead to quite different predictions of the direct-beam spectrum, strongly depended on the input parameter. In all cases the inadequacies between the measured and the modeled direct-beam spectra are lower and higher when the urban and maritime aerosol models are used, respectively.

Keywords: Spectral direct-beam radiation; SMARTS model; Input parameters; Athens (search for similar items in EconPapers)
Date: 2008
References: View complete reference list from CitEc
Citations: View citations in EconPapers (8)

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Persistent link: https://EconPapers.repec.org/RePEc:eee:renene:v:33:y:2008:i:7:p:1532-1543

DOI: 10.1016/j.renene.2007.09.006

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