In order to reduce electricity generation costs of concentrating solar power (CSP) technologies, new low-cost reflector materials are being developed. These materials need to withstand harsh outdoor conditions without a significant loss in specular reflectance. In this work, samples of enhanced anodized aluminum reflectors protected by a sol-gel coating that have been exposed at different weathering sites were analyzed with an innovative specular reflectometer in order to monitor corrosion and scattering caused by surface roughness. a model to estimate the specular reflectance as a function of exposure conditions at different weathering sites has been developed
AbstractConcentrating solar power (CSP) plants are often located near industrial areas typically aff...
Reflectors for concentrated solar thermal technologies need to withstand 20 or even 30 years of outd...
In line with The Paris Agreement, the world is now changing towards more sustainable options for all...
Enhanced first-surface aluminum reflectors are being studied as a low cost alternative to thick glas...
This paper reports the development of a new optical instrument capable of characterizing the aging p...
Lifetime tests of solar reflector materials are eligible prior to application, to prove the stabilit...
The reflector durability is essential to maintain suitable photo-to-thermal conversion in concentrat...
The reflector durability is essential to maintain suitable photo-to-thermal conversion in concentrat...
Reflectors are a vital part of a concentrating solar thermal power plant. One of their most importan...
This testing guideline specifies the recommended accelerated aging conditions to reproduce realistic...
Durability testing of a variety of candidate solar reflector materials at outdoor test sites and in ...
A newly developed aluminium-polymer-laminated steel reflector for use in solar concentrators was eva...
The accumulation of dust and soil on the surface of solar reflectors is an important factor reducing...
Solar reflectors for Concentrating Solar Power (CSP)concentrators require a high reflectance and hig...
ABSTRACT: Selective absorber coatings for solar thermal collectors and reflector coatings for Concen...
AbstractConcentrating solar power (CSP) plants are often located near industrial areas typically aff...
Reflectors for concentrated solar thermal technologies need to withstand 20 or even 30 years of outd...
In line with The Paris Agreement, the world is now changing towards more sustainable options for all...
Enhanced first-surface aluminum reflectors are being studied as a low cost alternative to thick glas...
This paper reports the development of a new optical instrument capable of characterizing the aging p...
Lifetime tests of solar reflector materials are eligible prior to application, to prove the stabilit...
The reflector durability is essential to maintain suitable photo-to-thermal conversion in concentrat...
The reflector durability is essential to maintain suitable photo-to-thermal conversion in concentrat...
Reflectors are a vital part of a concentrating solar thermal power plant. One of their most importan...
This testing guideline specifies the recommended accelerated aging conditions to reproduce realistic...
Durability testing of a variety of candidate solar reflector materials at outdoor test sites and in ...
A newly developed aluminium-polymer-laminated steel reflector for use in solar concentrators was eva...
The accumulation of dust and soil on the surface of solar reflectors is an important factor reducing...
Solar reflectors for Concentrating Solar Power (CSP)concentrators require a high reflectance and hig...
ABSTRACT: Selective absorber coatings for solar thermal collectors and reflector coatings for Concen...
AbstractConcentrating solar power (CSP) plants are often located near industrial areas typically aff...
Reflectors for concentrated solar thermal technologies need to withstand 20 or even 30 years of outd...
In line with The Paris Agreement, the world is now changing towards more sustainable options for all...