Novel approaches for solar energy conversion are increasingly garnering research and commercial interest, particularly as hybrid thermal and electrical energy sources. Additionally, the need for systems capable of producing thermal energy at temperatures up to 300°C is growing as a means to provide process heat to industry and distributed generation for small communities. One such concept under rapid development since 2008 is the use of nanoparticles suspended in a heat transfer fluid that is directly exposed to incoming solar irradiance. Such collectors, often referred to as direct absorption solar collectors or volumetric solar collectors, have primarily been investigated (experimentally and numerically) at low temperatures due to the cha...
Nanoparticle based direct solar absorption is a promising technology for future solar thermal system...
Direct absorption solar collector (DASC) have recently attracted increasing interest in combination ...
In the last decade, nanofluids have set significant milestones as efficient working fluids in the fi...
Suspensions of nanoparticles (i.e., particles with diameters \u3c 100 nm) in liquids, termed nan...
Nanofluids are defined as dilute suspensions with solid particles smaller than 100 nm. Nanofluids pr...
Carbon nanoparticles are very useful in solar thermal applications, since they absorb much of the s...
A promising new generation of solar thermal collector able to enhance the thermal efficiency is the ...
Nanofluids, which are colloidal suspensions of solid nanoparticles in conventional heat transfer flu...
Solar energy is one of the best sources of renewable energy with minimal environmental impact. D...
The global demand for energy is increasing and the detrimental consequences of rising greenhouse gas...
Suspensions of nanoparticles (i.e., particles with diameters < 100 nm) in liquids, termed nanoflu...
The global demand for energy is increasing and the detrimental consequences of rising greenhouse gas...
The solar absorption efficiency of water as a base-fluid can be significantly improved by suspending...
As conventional energy like fossil fuels is getting rare, cost of energy production has been increas...
At high flux conditions, surface absorption based solar thermal systems underperform owing to high o...
Nanoparticle based direct solar absorption is a promising technology for future solar thermal system...
Direct absorption solar collector (DASC) have recently attracted increasing interest in combination ...
In the last decade, nanofluids have set significant milestones as efficient working fluids in the fi...
Suspensions of nanoparticles (i.e., particles with diameters \u3c 100 nm) in liquids, termed nan...
Nanofluids are defined as dilute suspensions with solid particles smaller than 100 nm. Nanofluids pr...
Carbon nanoparticles are very useful in solar thermal applications, since they absorb much of the s...
A promising new generation of solar thermal collector able to enhance the thermal efficiency is the ...
Nanofluids, which are colloidal suspensions of solid nanoparticles in conventional heat transfer flu...
Solar energy is one of the best sources of renewable energy with minimal environmental impact. D...
The global demand for energy is increasing and the detrimental consequences of rising greenhouse gas...
Suspensions of nanoparticles (i.e., particles with diameters < 100 nm) in liquids, termed nanoflu...
The global demand for energy is increasing and the detrimental consequences of rising greenhouse gas...
The solar absorption efficiency of water as a base-fluid can be significantly improved by suspending...
As conventional energy like fossil fuels is getting rare, cost of energy production has been increas...
At high flux conditions, surface absorption based solar thermal systems underperform owing to high o...
Nanoparticle based direct solar absorption is a promising technology for future solar thermal system...
Direct absorption solar collector (DASC) have recently attracted increasing interest in combination ...
In the last decade, nanofluids have set significant milestones as efficient working fluids in the fi...