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Key design parameters of the system, including PV cell type, emissivity, solar concentration ratio and solar concentrator type, are individually studied.
Through the combination of a parabolic primary concentrator with a nonimaging secondary concentrator, the collector reaches a solar concentration ratio of 97.5.
Solar concentration measures the degree to which the solar energy is concentrated by the parabolic trough.
The recent developments of concentrated solar energy applications using Fresnel lens systems include imaging Fresnel lens solar concentration systems and non-imaging systems [5].
High reflective mirrors are commonly used in solar concentration devices.
At each solar concentration, this efficiency is compared with the receiver efficiency of water and single graphite layer on water.
Photodegradation studies of carbaryl pesticides were performed as a function of solar concentration using newly designed CPC collectors with different geometric solar concentration ratios.
Optimization of solar concentration receiver designs requires of models that characterize thermal balance at receiver wall.
Its combination with solar concentration makes an alternative to classical technologies.
The addition of a straight reflector section enables the solar concentration to be increased.
Nowadays, the photovoltaic conversion is a consolidated technology and can be efficiently combined with solar concentration.
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