Concentrated Solar Power and Concentrating Photovoltaics usually involve secondary optics that collects the sunlight focused by the primary optic to improve system energetic performance. Promising materials for the construction of secondary reflectors for a solar furnace were tested, examining endurance at the working power density and verifying if an achievable damage threshold exists. The field test consisted in exposing the samples to sunlight by using a dual-axis solar tracker and a suitable Fresnel lens. The materials were glass mirrors and a multilayer mirror based on an aluminum substrate. The measured quantities were: systematic reflectance control; temperature of the sample back side; concentrated solar power density; exposure time. The samples showed no appreciable decays in reflectance during the whole exposure period. © 2014 AEIT.

Optical damage tests on reflecting materials for solar applications

Fontani Daniela;Jafrancesco David;Francini Franco;Mercatelli Luca;Sani Elisa;Sansoni Paola
2014

Abstract

Concentrated Solar Power and Concentrating Photovoltaics usually involve secondary optics that collects the sunlight focused by the primary optic to improve system energetic performance. Promising materials for the construction of secondary reflectors for a solar furnace were tested, examining endurance at the working power density and verifying if an achievable damage threshold exists. The field test consisted in exposing the samples to sunlight by using a dual-axis solar tracker and a suitable Fresnel lens. The materials were glass mirrors and a multilayer mirror based on an aluminum substrate. The measured quantities were: systematic reflectance control; temperature of the sample back side; concentrated solar power density; exposure time. The samples showed no appreciable decays in reflectance during the whole exposure period. © 2014 AEIT.
2014
Istituto Nazionale di Ottica - INO
9788887237177
Materials
Solar Concentration
Solar Tests
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/285261
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