For concentrating Solar Tower (ST) power plants, heliostats must be cleaned to maintain high productivity, but this comes at the cost of cleaning expenditures. Striking the correct balance remains challenging, due in part to the fact that soiling losses are location-dependent, stochastic, seasonal, and spatially inhomogeneous across the field. In this paper, novel reflectance-based cleaning policies are developed that trigger and prioritize cleaning of different solar field sectors based on reflectance measurements. In contrast to existing approaches, these policies have the potential to mitigate the effect of stochastic soiling losses and allocate finite cleaning resources by considering the spatial inhomogeneity of soiling. The optimizati...
Reflectance losses on solar mirrors due to soiling are a significant challenge for Concentrating Sol...
The soiling of heliostats in concentrated solar power plants leads to significant revenue losses of ...
Addressing soiling-related losses of glazed surfaces in solar power technologies is one of the most ...
For concentrating Solar Tower (ST) power plants, heliostats must be cleaned to maintain high product...
One of the primary cost drivers for concentrated solar power operations and maintenance is the soili...
The reduction of energy production due to heliostat soiling causes generation losses and therefore r...
The reduction due to soiling of the optical efficiency of the heliostats in the solar field is a sig...
The reduction of energy production due to heliostat soiling causes generation losses and therefore r...
Cleaning costs of mirrors contribute a significant portion in operation and maintenance costs (O&...
The optical efficiency of the solar field heliostats of a Concentrating Solar Power (CSP) tower plan...
International audienceThe issue of reflector soiling becomes more important as concentrating solar t...
The light-collecting surfaces of solar power systems cover areas of more than 3,000 km2 worldwide, w...
Reflectance losses on solar mirrors due to soiling are a significant challenge for Concentrating Sol...
The soiling of heliostats in concentrated solar power plants leads to significant revenue losses of ...
Addressing soiling-related losses of glazed surfaces in solar power technologies is one of the most ...
For concentrating Solar Tower (ST) power plants, heliostats must be cleaned to maintain high product...
One of the primary cost drivers for concentrated solar power operations and maintenance is the soili...
The reduction of energy production due to heliostat soiling causes generation losses and therefore r...
The reduction due to soiling of the optical efficiency of the heliostats in the solar field is a sig...
The reduction of energy production due to heliostat soiling causes generation losses and therefore r...
Cleaning costs of mirrors contribute a significant portion in operation and maintenance costs (O&...
The optical efficiency of the solar field heliostats of a Concentrating Solar Power (CSP) tower plan...
International audienceThe issue of reflector soiling becomes more important as concentrating solar t...
The light-collecting surfaces of solar power systems cover areas of more than 3,000 km2 worldwide, w...
Reflectance losses on solar mirrors due to soiling are a significant challenge for Concentrating Sol...
The soiling of heliostats in concentrated solar power plants leads to significant revenue losses of ...
Addressing soiling-related losses of glazed surfaces in solar power technologies is one of the most ...