The viscosity ratio (relative viscosity) of a nanofluid to its base liquid is related to the nanoparticle volume fraction by various developed theoretical and empirical equations. However, the theoretical framework used up to now is often inadequate for modelling experimental data. Now, a new parameter denoted as the Dispersion Factor (DF) is proposed to advance the accurate modelling of relative viscosities of nanofluids dependent on nanoparticle volume fraction. Literature data of TiO2, γ-Al2O3 and SiO2 nanofluids have been selected and subjected to our new theoretical treatment using the Chen equation adapted with the Dispersion Factor to model the relative viscosity in relation to the nanoparticle volume fractions. A much better agreeme...
Nanofluids are advantageous due to their superior thermophysical properties compared to base fluids....
Thermophysical properties of TiO2, Al2O3 and SiO2 nanofluids are experimentally investigated and com...
In many aspects the past decade has proved the rapid development of water based and oil based nanofl...
The viscosity ratio (relative viscosity) of a nanofluid to its base liquid is related to the nanopar...
The viscosity ratio (relative viscosity) of a nanofluid to its base liquid is related to the nanopar...
The viscosity ratio (relative viscosity) of a nanofluid to its base liquid is related to the nanopar...
peer reviewedThe effective viscosity of nanoparticle dispersions has been investigated experimentall...
The effective viscosity of nanoparticle dispersions has been investigated experimentally quite a lot...
In this paper a new viscosity model is proposed in order to predict the viscosity of the nanofluids ...
This study focused on measuring the viscosity and analyzing the behavior of two types of nanofluids:...
In this study, the effect of adding different nanoparticles in the mixture of deionised water and et...
This article reports viscosity data on a series of colloidal dispersions collected as part of the In...
AbstractIn this paper a new viscosity model is proposed in order to predict the viscosity of the nan...
The modeling of the viscous behavior of nanoemulsions and nanosuspensions is discussed. The influenc...
Nanofluids are advantageous due to their superior thermophysical properties compared to base fluids....
Nanofluids are advantageous due to their superior thermophysical properties compared to base fluids....
Thermophysical properties of TiO2, Al2O3 and SiO2 nanofluids are experimentally investigated and com...
In many aspects the past decade has proved the rapid development of water based and oil based nanofl...
The viscosity ratio (relative viscosity) of a nanofluid to its base liquid is related to the nanopar...
The viscosity ratio (relative viscosity) of a nanofluid to its base liquid is related to the nanopar...
The viscosity ratio (relative viscosity) of a nanofluid to its base liquid is related to the nanopar...
peer reviewedThe effective viscosity of nanoparticle dispersions has been investigated experimentall...
The effective viscosity of nanoparticle dispersions has been investigated experimentally quite a lot...
In this paper a new viscosity model is proposed in order to predict the viscosity of the nanofluids ...
This study focused on measuring the viscosity and analyzing the behavior of two types of nanofluids:...
In this study, the effect of adding different nanoparticles in the mixture of deionised water and et...
This article reports viscosity data on a series of colloidal dispersions collected as part of the In...
AbstractIn this paper a new viscosity model is proposed in order to predict the viscosity of the nan...
The modeling of the viscous behavior of nanoemulsions and nanosuspensions is discussed. The influenc...
Nanofluids are advantageous due to their superior thermophysical properties compared to base fluids....
Nanofluids are advantageous due to their superior thermophysical properties compared to base fluids....
Thermophysical properties of TiO2, Al2O3 and SiO2 nanofluids are experimentally investigated and com...
In many aspects the past decade has proved the rapid development of water based and oil based nanofl...