The convective heat transfer of ZnO/water colloidal suspensions is investigated experimentally to appreciate the influence of two shapes of nanoparticles. Pressure drop and heat transfer coefficients have been measured at two different inlet temperatures (20, 50°C) in heating and/or cooling conditions at various flow rates (200 \u3c Re \u3c 15,000). The Reynolds and Nusselt numbers have been determined by using thermal conductivity and viscosity measured in the same conditions as those in tests. The results obtained are compared with classical correlations. An energetic Performance Evaluation Criterion (PEC) has been defined to compare heat transfer rate to pumping power
The plate and concentric tube heat exchangers are tested by using the water-water and nanofluid-wate...
This paper investigated convective heat transfer and friction factor of ZrO2/H2O nanofluid through a...
This work qualifies and quantifies the nanofluidic natural convective phenomena occurring in a hemi...
Recent investigations on nanofluids indicate that the suspended nanoparticles markedly change the he...
Abstract Experimental investigation was conducted on the thermal performance and pressure drop of a...
This paper deals with the characterization and modelling of water-based nanofluids containing zinc o...
For replacing the traditional used working fluids heat exchanger with alternative fluid which must h...
Nanofluids are liquid suspensions containing nanoparticles that are smaller than 100 nm. There is an...
This work presents a study of using the Wilson Plot method to determine the convective heat transfer...
In this era, the utilization of automobiles is increasing rapidly. So, it is a task for the automobi...
This paper deals with experimental determination of convective heat transfer coefficient in a counte...
In this work, an experimental system was established to measure the heat transfer characteristics, i...
This paper presents the experimental forced convective heat transfer coefficient (HTC) of nanorods (...
Over the last decades, intensive studies are performed on nanofluids behavior in many real-life situ...
Experimental investigation was conducted on the thermal performance and pressure drop of a convectiv...
The plate and concentric tube heat exchangers are tested by using the water-water and nanofluid-wate...
This paper investigated convective heat transfer and friction factor of ZrO2/H2O nanofluid through a...
This work qualifies and quantifies the nanofluidic natural convective phenomena occurring in a hemi...
Recent investigations on nanofluids indicate that the suspended nanoparticles markedly change the he...
Abstract Experimental investigation was conducted on the thermal performance and pressure drop of a...
This paper deals with the characterization and modelling of water-based nanofluids containing zinc o...
For replacing the traditional used working fluids heat exchanger with alternative fluid which must h...
Nanofluids are liquid suspensions containing nanoparticles that are smaller than 100 nm. There is an...
This work presents a study of using the Wilson Plot method to determine the convective heat transfer...
In this era, the utilization of automobiles is increasing rapidly. So, it is a task for the automobi...
This paper deals with experimental determination of convective heat transfer coefficient in a counte...
In this work, an experimental system was established to measure the heat transfer characteristics, i...
This paper presents the experimental forced convective heat transfer coefficient (HTC) of nanorods (...
Over the last decades, intensive studies are performed on nanofluids behavior in many real-life situ...
Experimental investigation was conducted on the thermal performance and pressure drop of a convectiv...
The plate and concentric tube heat exchangers are tested by using the water-water and nanofluid-wate...
This paper investigated convective heat transfer and friction factor of ZrO2/H2O nanofluid through a...
This work qualifies and quantifies the nanofluidic natural convective phenomena occurring in a hemi...