Losses of reflected Direct Normal Irradiance due to atmospheric extinction in concentrated solar tower plants can vary significantly with site and time. The losses of the direct normal irradiance between the heliostat field and receiver in a solar tower plant are mainly caused by atmospheric scattering and absorption by aerosol and water vapor concentration in the atmospheric boundary layer. Due to a high aerosol particle number, radiation losses can be significantly larger in desert environments compared to the standard atmospheric conditions which are usually considered in ray-tracing or plant optimization tools. Information about on-site atmospheric extinction is only rarely available. To measure these radiation losses, two different com...
In yield analysis and plant design of concentrated solar power (CSP) tower plants, increased uncerta...
Attenuation of solar radiation between the receiver and the heliostat field in concentrated solar po...
Attenuation of solar radiation between the receiver and the heliostat field in concentrated solar po...
Losses of reflected Direct Normal Irradiance due to atmospheric extinction in concentrated solar tow...
Losses of reflected Direct Normal Irradiance due to atmospheric extinction in concentrated solar tow...
Losses of reflected Direct Normal Irradiance due to atmospheric extinction in concentrated solar tow...
Losses of reflected Direct Normal Irradiance due to atmospheric extinction in concentrated solar tow...
Losses of reflected Direct Normal Irradiance due to atmospheric extinction in concentrated solar tow...
Losses of reflected Direct Normal Irradiance due to atmospheric extinction in concentrated solar tow...
Losses of the reflected direct normal irradiance (DNI) between the heliostat field and receiver in a...
Losses of the reflected direct normal irradiance (DNI) between the heliostat field and receiver in a...
Solar radiation reflected by concentrating mirrors is attenuated due to atmospheric extinction as it...
Solar radiation reflected by concentrating mirrors is attenuated due to atmospheric extinction as it...
In yield analysis and plant design of concentrated solar power (CSP) tower plants, increased uncerta...
In yield analysis and plant design of concentrated solar power (CSP) tower plants, increased uncerta...
In yield analysis and plant design of concentrated solar power (CSP) tower plants, increased uncerta...
Attenuation of solar radiation between the receiver and the heliostat field in concentrated solar po...
Attenuation of solar radiation between the receiver and the heliostat field in concentrated solar po...
Losses of reflected Direct Normal Irradiance due to atmospheric extinction in concentrated solar tow...
Losses of reflected Direct Normal Irradiance due to atmospheric extinction in concentrated solar tow...
Losses of reflected Direct Normal Irradiance due to atmospheric extinction in concentrated solar tow...
Losses of reflected Direct Normal Irradiance due to atmospheric extinction in concentrated solar tow...
Losses of reflected Direct Normal Irradiance due to atmospheric extinction in concentrated solar tow...
Losses of reflected Direct Normal Irradiance due to atmospheric extinction in concentrated solar tow...
Losses of the reflected direct normal irradiance (DNI) between the heliostat field and receiver in a...
Losses of the reflected direct normal irradiance (DNI) between the heliostat field and receiver in a...
Solar radiation reflected by concentrating mirrors is attenuated due to atmospheric extinction as it...
Solar radiation reflected by concentrating mirrors is attenuated due to atmospheric extinction as it...
In yield analysis and plant design of concentrated solar power (CSP) tower plants, increased uncerta...
In yield analysis and plant design of concentrated solar power (CSP) tower plants, increased uncerta...
In yield analysis and plant design of concentrated solar power (CSP) tower plants, increased uncerta...
Attenuation of solar radiation between the receiver and the heliostat field in concentrated solar po...
Attenuation of solar radiation between the receiver and the heliostat field in concentrated solar po...