International audienceThe paper presents novel data on synthesis, identification and physicochemical investigation of MWCNT/PEG-400 nanofluids as potential nano-enhanced heat transfer and storage media. In the framework of our research, we studied the influence of temperature and nanoparticle concentration on thermal conductivity (k), viscosity (η), density (ρ) and isobaric heat capacity (Cp), using different techniques such as transient hot wire, rheology, oscillating U-tube, and Temperature-Modulated Differential Scanning Calorimetry (TMDSC), respectively. In order to characterize the new nano-enhanced phase change materials, several dispersions of MWCNT in PEG-400 were studied, of which the highest concentration presents enhancements in ...
Heat transfer fluids have inherently low thermal conductivity that greatly limits the heat exchange...
Copper nanoparticles and carbon nanotubes have been found to enhance the thermal conductivity of bas...
Due to the more powerful and miniaturized nature of modern devices, conventional heat-transfer worki...
International audienceThe paper presents novel data on synthesis, identification and physicochemical...
In this study, a thermal media is synthesized by mixing hydrogen bond acceptor (HBA) [Methyltripheny...
This article presents the effect of adding multi wall carbon nanotubes (MWCNT) in water – ethylene g...
In the verge of acute energy demand the heat transfer fluids were required to modify and develop a h...
Phase change materials find potential application in the field of Heating ventilation and air condit...
This article presents the effect of adding multi wall carbon nanotubes (MWCNT) in water – ethylene g...
Nanofluids are a new class of heat transfer fluids which are engineered by dispersing nanometer-size...
International audienceIn the current trend towards demand for effective heat removal of high density...
Conventional fluids have lower thermal properties. Moreover, the low freezing and high boiling point...
Conventional fluids have lower thermal properties. Moreover, the low freezing and high boiling point...
The pursuit of superior working fluids for heat and mass transfer systems in the industry is on the ...
Nanofluids with their enhanced thermal conductivity are believed to be a promising coolant in heat t...
Heat transfer fluids have inherently low thermal conductivity that greatly limits the heat exchange...
Copper nanoparticles and carbon nanotubes have been found to enhance the thermal conductivity of bas...
Due to the more powerful and miniaturized nature of modern devices, conventional heat-transfer worki...
International audienceThe paper presents novel data on synthesis, identification and physicochemical...
In this study, a thermal media is synthesized by mixing hydrogen bond acceptor (HBA) [Methyltripheny...
This article presents the effect of adding multi wall carbon nanotubes (MWCNT) in water – ethylene g...
In the verge of acute energy demand the heat transfer fluids were required to modify and develop a h...
Phase change materials find potential application in the field of Heating ventilation and air condit...
This article presents the effect of adding multi wall carbon nanotubes (MWCNT) in water – ethylene g...
Nanofluids are a new class of heat transfer fluids which are engineered by dispersing nanometer-size...
International audienceIn the current trend towards demand for effective heat removal of high density...
Conventional fluids have lower thermal properties. Moreover, the low freezing and high boiling point...
Conventional fluids have lower thermal properties. Moreover, the low freezing and high boiling point...
The pursuit of superior working fluids for heat and mass transfer systems in the industry is on the ...
Nanofluids with their enhanced thermal conductivity are believed to be a promising coolant in heat t...
Heat transfer fluids have inherently low thermal conductivity that greatly limits the heat exchange...
Copper nanoparticles and carbon nanotubes have been found to enhance the thermal conductivity of bas...
Due to the more powerful and miniaturized nature of modern devices, conventional heat-transfer worki...