Turbulent heat transfer to separation nanofluid flow in annular concentric pipe were studied numerically and experimentally. In the numerical study, finite volume method with standard k-ε turbulence model in three dimensional domains was selected. Three different types of water based (Al2O3, CuO, TiO2) nanofluids were employed in this simulation. The adopted boundary conditions were, expansion ratio (ER = 1.25, 1.67, and 2), Reynolds number ranging from 20, 000 to 50, 000, water based nanofluids used Al2O3, CuO, TiO2with volume fractions varied between 0 and 2% at different heat fluxes, varied from 4000 W/m2to 16, 000 W/m2. For experimental study, Al2O3water based nanofluid was used to validate the numerical results. The results show that t...
In this study, the flow field and heat transfer of Al2O3–water nanofluid turbulent forced convection...
The need for high thermal performance thermal systems has been eventuated by finding different ways ...
Two-dimensional turbulent convective heat transfer behaviour of alumina (Al2O3) nanoparticle dispers...
Turbulent heat transfer to separation nanofluid flow in annular concentric pipe has been studied num...
This study was focus on the flow separation phenomena of annular passage which appears in a number o...
Backward facing step play a vital role in the design of many equipment and engineering applications ...
The energy crises in the worldwide have been encouraging the researchers to look for new methods whi...
Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion is studied...
Investigation of flow separation and reattachment of 0.2% water-based TiO2 nanofluid in an annular s...
A numerical investigation has been carried out applying single phase approach on turbulent forced co...
Abstract. Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion ...
Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion is studied...
Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion is studied...
Thermal characteristics of turbulent nanofluid flow in rectangular pipe are numerically investigated...
Turbulent forced convection of different nanofluids consisting of -Al2O3/water and CuO/water in a co...
In this study, the flow field and heat transfer of Al2O3–water nanofluid turbulent forced convection...
The need for high thermal performance thermal systems has been eventuated by finding different ways ...
Two-dimensional turbulent convective heat transfer behaviour of alumina (Al2O3) nanoparticle dispers...
Turbulent heat transfer to separation nanofluid flow in annular concentric pipe has been studied num...
This study was focus on the flow separation phenomena of annular passage which appears in a number o...
Backward facing step play a vital role in the design of many equipment and engineering applications ...
The energy crises in the worldwide have been encouraging the researchers to look for new methods whi...
Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion is studied...
Investigation of flow separation and reattachment of 0.2% water-based TiO2 nanofluid in an annular s...
A numerical investigation has been carried out applying single phase approach on turbulent forced co...
Abstract. Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion ...
Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion is studied...
Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion is studied...
Thermal characteristics of turbulent nanofluid flow in rectangular pipe are numerically investigated...
Turbulent forced convection of different nanofluids consisting of -Al2O3/water and CuO/water in a co...
In this study, the flow field and heat transfer of Al2O3–water nanofluid turbulent forced convection...
The need for high thermal performance thermal systems has been eventuated by finding different ways ...
Two-dimensional turbulent convective heat transfer behaviour of alumina (Al2O3) nanoparticle dispers...