Heat transfer enhancement of nanofluids under turbulent flow through a straight square channel under constant heat flux conditions at the upper and lower walls is studied numerically. The nanofluids are prepared as solid nanoparticles of CuO, TiO2 and Al2O3 suspended in water. CFD analysis by FLUENT software using the finite volume method is conducted. The boundary conditions are applied under a heat flux of 5000 W/m2, Reynolds numbers of 104–106 and a constant volume concentration of 1–4%. The results show that the heat transfer rates and wall shear stress increase with an increase of the nanofluids’ volume concentration. It seems that the CuO nanofluid significantly enhances heat transfer. The results show good agreement with results of o...
Thermal characteristics of turbulent nanofluid flow in rectangular pipe are numerically investigated...
Numerical study of turbulent heat transfer of nanofluid through a corrugated channel is presented. T...
Numerical study of heat transfer due to turbulent flow of nanofluids through rib-groove channel have...
AbstractHeat transfer enhancement of nanofluids under turbulent flow through a straight square chann...
The need for high thermal performance thermal systems has been eventuated by finding different ways ...
Heat transfer enhancement of nanofluids under turbulent flow through a straight square channel under...
The need for high thermal performance thermal systems has been eventuated by finding different ways ...
This paper proceeds numerical investigation on forced convective heat transfer of nanofluids in lami...
In this study, the flow field and heat transfer of differents nanofluids (AL2O3, CuO, SiO2, ZnO), tu...
WOS: 000411298000004In this study, the heat transfer characteristics of CuO-water-based nanofluids i...
Titania-based nanofluid flowing inside a circular tube under the boundary condition of a horizontal ...
Turbulent heat transfer to separation nanofluid flow in annular concentric pipe has been studied num...
AbstractNumerical study of heat transfer due to turbulent flow of nanofluids through rib–groove chan...
Turbulent heat transfer to separation nanofluid flow in annular concentric pipe were studied numeric...
A study of computational fluid dynamics has been conducted to study the characteristics of the heat ...
Thermal characteristics of turbulent nanofluid flow in rectangular pipe are numerically investigated...
Numerical study of turbulent heat transfer of nanofluid through a corrugated channel is presented. T...
Numerical study of heat transfer due to turbulent flow of nanofluids through rib-groove channel have...
AbstractHeat transfer enhancement of nanofluids under turbulent flow through a straight square chann...
The need for high thermal performance thermal systems has been eventuated by finding different ways ...
Heat transfer enhancement of nanofluids under turbulent flow through a straight square channel under...
The need for high thermal performance thermal systems has been eventuated by finding different ways ...
This paper proceeds numerical investigation on forced convective heat transfer of nanofluids in lami...
In this study, the flow field and heat transfer of differents nanofluids (AL2O3, CuO, SiO2, ZnO), tu...
WOS: 000411298000004In this study, the heat transfer characteristics of CuO-water-based nanofluids i...
Titania-based nanofluid flowing inside a circular tube under the boundary condition of a horizontal ...
Turbulent heat transfer to separation nanofluid flow in annular concentric pipe has been studied num...
AbstractNumerical study of heat transfer due to turbulent flow of nanofluids through rib–groove chan...
Turbulent heat transfer to separation nanofluid flow in annular concentric pipe were studied numeric...
A study of computational fluid dynamics has been conducted to study the characteristics of the heat ...
Thermal characteristics of turbulent nanofluid flow in rectangular pipe are numerically investigated...
Numerical study of turbulent heat transfer of nanofluid through a corrugated channel is presented. T...
Numerical study of heat transfer due to turbulent flow of nanofluids through rib-groove channel have...