The addition of solid nanoparticles to liquids provide significant enhancement of heat transfer and hydrodynamic flow. The viscosity of nanofluids is important for nanofluid transport related to flow dynamics and heat transfer. The aim of the paper is to investigate experimentally the viscosity of nanofluids prepared with glycerol base and nitrogen-doped bamboo shaped multi-walled carbon nanotubes (MWCNTs). The samples are prepared with 0.1, 0.2, 0.5 and 1.0 wt.% MWCNTs. The viscosity of glycerol and MWCNTs nanofluid suspensions are measured at various temperatures and rotational speeds (shear rates). The influence of nanotubes amount, temperature and rotational speed on the viscosity is investigated
This article presents the effect of adding multi wall carbon nanotubes (MWCNT) in water – ethylene g...
The paper presents the results of experimental study of rheological behavior of nanofluids based fro...
International audienceThe thermo-physical properties of water-based nanofluids containing carbon nan...
The addition of solid nanoparticles to liquids provide significant enhancement of heat transfer and ...
International audienceExperimental results on the steady-state viscosity of carbon nanotubes water-b...
In the present article, the effects of temperature and nanoparticles volume fraction on the viscosit...
Several researchers devoted their efforts for the thermal conductivity enhancement of Carbon Nanotub...
This paper focused on thermal conductivity and viscosity of deionised water and ethylene glycol-base...
The use of nanofluids to boost the thermal performance of conventional work fluids has recently show...
AbstractKinematic viscosity of single walled carbon nanotubes (SWCNTs)/ lube oil cuts nanofluids con...
Thermal conductivity is one of the rheology properties that vital for engineering fluid which indisp...
Special Issue on Energy Solutions for a Sustainable World - Proceedings of the Third International C...
In the field of heat transfer, the use of the properties of rheological behavior inherent to suspens...
In the field of heat transfer, the use of the properties of rheological behavior inherent to suspens...
The innovation of nanofluids, a novel working fluid, has presented the development of heat transfer ...
This article presents the effect of adding multi wall carbon nanotubes (MWCNT) in water – ethylene g...
The paper presents the results of experimental study of rheological behavior of nanofluids based fro...
International audienceThe thermo-physical properties of water-based nanofluids containing carbon nan...
The addition of solid nanoparticles to liquids provide significant enhancement of heat transfer and ...
International audienceExperimental results on the steady-state viscosity of carbon nanotubes water-b...
In the present article, the effects of temperature and nanoparticles volume fraction on the viscosit...
Several researchers devoted their efforts for the thermal conductivity enhancement of Carbon Nanotub...
This paper focused on thermal conductivity and viscosity of deionised water and ethylene glycol-base...
The use of nanofluids to boost the thermal performance of conventional work fluids has recently show...
AbstractKinematic viscosity of single walled carbon nanotubes (SWCNTs)/ lube oil cuts nanofluids con...
Thermal conductivity is one of the rheology properties that vital for engineering fluid which indisp...
Special Issue on Energy Solutions for a Sustainable World - Proceedings of the Third International C...
In the field of heat transfer, the use of the properties of rheological behavior inherent to suspens...
In the field of heat transfer, the use of the properties of rheological behavior inherent to suspens...
The innovation of nanofluids, a novel working fluid, has presented the development of heat transfer ...
This article presents the effect of adding multi wall carbon nanotubes (MWCNT) in water – ethylene g...
The paper presents the results of experimental study of rheological behavior of nanofluids based fro...
International audienceThe thermo-physical properties of water-based nanofluids containing carbon nan...