The addition of nanoparticles in a base fluid can enhance its optical properties, in particular its absorption properties. Thus, nanofluids can be successfully used in solar collectors to absorb the solar radiation in their volume and avoid using an absorber plate. This paper investigates the application of aqueous suspensions as volumetric absorber in a concentrating direct absorption solar collector: a suspension of single wall carbon nanohorns (SWCNHs) in water is chosen as the nanofluid. A model of a solar receiver with a planar geometry to be installed in a parabolic trough concentrator is developed: the radiative transfer equation in participating medium and the energy equation are numerically solved to predict the thermal performance...
Recently, several publications gave attention to nanofluid based solar absorber systems in which the...
Solar-to-thermal energy conversion technologies are an important and increasingly promising segment ...
The present thesis evaluates the potential of solar nanofluids as direct absorption solar collectors...
The application of nanofluids has the potential to solve technical issues in many solar thermal engi...
The application of nanofluids has the potential to solve technical key issues in many solar thermal ...
Direct solar absorption has been often considered in the past as a possible solution for solar therm...
Direct absorption solar collector (DASC) have recently attracted increasing interest in combination ...
Solar power plants with surface receivers have low overall energy conversion efficiencies due to lar...
A numerical analysis on a two-dimensional steady state forced convection inside a solar collector wi...
Direct absorption solar collectors operating with nanofluids represent a promising technology in the...
In this paper a novel technique for the in-line evaluation of the absorption rate of solar radiation...
Application of solar collectors for hot water supply, space heating, and cooling plays a significant...
Recently, several publications gave attention to nanofluid based solar absorber systems in which the...
Nanofluids utilized as volumetric absorbers of solar energy have shown significant potential to enha...
Dispersing trace amounts of nanoparticles into common base-fluids has a significant impact on the op...
Recently, several publications gave attention to nanofluid based solar absorber systems in which the...
Solar-to-thermal energy conversion technologies are an important and increasingly promising segment ...
The present thesis evaluates the potential of solar nanofluids as direct absorption solar collectors...
The application of nanofluids has the potential to solve technical issues in many solar thermal engi...
The application of nanofluids has the potential to solve technical key issues in many solar thermal ...
Direct solar absorption has been often considered in the past as a possible solution for solar therm...
Direct absorption solar collector (DASC) have recently attracted increasing interest in combination ...
Solar power plants with surface receivers have low overall energy conversion efficiencies due to lar...
A numerical analysis on a two-dimensional steady state forced convection inside a solar collector wi...
Direct absorption solar collectors operating with nanofluids represent a promising technology in the...
In this paper a novel technique for the in-line evaluation of the absorption rate of solar radiation...
Application of solar collectors for hot water supply, space heating, and cooling plays a significant...
Recently, several publications gave attention to nanofluid based solar absorber systems in which the...
Nanofluids utilized as volumetric absorbers of solar energy have shown significant potential to enha...
Dispersing trace amounts of nanoparticles into common base-fluids has a significant impact on the op...
Recently, several publications gave attention to nanofluid based solar absorber systems in which the...
Solar-to-thermal energy conversion technologies are an important and increasingly promising segment ...
The present thesis evaluates the potential of solar nanofluids as direct absorption solar collectors...