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Assessment of Photovoltaic Surface Texturing on Transmittance Effects and Glint/Glare Impacts
Author(s) -
Julius Yellowhair,
Clifford K. Ho
Publication year - 2015
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Conference proceedings
DOI - 10.1115/es2015-49481
Subject(s) - transmittance , photovoltaic system , glare , optics , surface roughness , surface finish , materials science , sunlight , environmental science , remote sensing , optoelectronics , engineering , physics , electrical engineering , geology , layer (electronics) , composite material
Standard glass and polymer covers on photovoltaic modules can partially reflect the sunlight causing glint and glare. Glint and glare from large photovoltaic installations can be significant and have the potential to create hazards for motorists, air-traffic controllers and pilots flying near installations. In this work, the reflectance, surface roughness and reflected solar beam spread were measured from various photovoltaic modules acquired from seven different manufacturers. The surface texturing of the PV modules varied from smooth to roughly textured. Correlations between the measured surface texturing (roughness parameters) and beam spread (subtended angle) were determined. These correlations were then used to assess surface texturing effects on transmittance and ocular impacts of glare from photovoltaic module covers. The results can be used to drive the designs for photovoltaic surface texturing to improve transmittance and minimize glint/glare.Copyright © 2015 by ASME

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