AbstractIn this paper, turbulent forced convection of nanofluids flow in triangular-corrugated channels is numerically investigated over Reynolds number ranges of 1000–5000. Four different types of nanofluids which are Al2O3, CuO, SiO2 and ZnO–water with nanoparticles diameters in the range of 30–70nm and the range of nanoparticles volume fraction from 0% to 4% have been considered. The governing equations of mass, momentum and energy are solved using finite volume method (FVM). The low Reynolds number k–ε model of Launder and Sharma is adopted as well. It is found that the average Nusselt number, pressure drop, heat transfer enhancement, thermal–hydraulic performance increase with increasing in the volume fraction of nanoparticles and with...
A numerical investigation is performed to study the effects of different rib shapes and turbulent na...
A numerical simulation is performed on thermal performance comparison of a corrugated channel with t...
Turbulent forced convection flow in a 2-dimensional channel over periodic grooves is numerically inv...
In this paper, turbulent forced convection of nanofluids flow in triangular-corrugated channels is n...
AbstractIn this paper, turbulent forced convection of nanofluids flow in triangular-corrugated chann...
Numerical study of turbulent heat transfer of nanofluid through a corrugated channel is presented. T...
In this paper, turbulent forced convection of nanofluids flow in different configurations of trapezo...
In this paper, convective heat transfer of SiO2–water nanofluid flow in channels with different shap...
AbstractIn this paper, convective heat transfer of SiO2–water nanofluid flow in channels with differ...
Thermal and hydraulic characteristics of turbulent nanofluids flow in a trapezoidal-corrugated chann...
Thermal and hydraulic characteristics of turbulent nanofluids flow in a trapezoidal-corrugated chann...
In this study, the flow field and heat transfer of differents nanofluids (AL2O3, CuO, SiO2, ZnO), tu...
AbstractThe heat transfer and flow characteristics in corrugated with V-shape lower plate using nano...
A numerical investigation is performed to study the effects of different rib shapes and turbulent na...
A numerical study is carried out to investigate the effects of different geometrical parameters and ...
A numerical investigation is performed to study the effects of different rib shapes and turbulent na...
A numerical simulation is performed on thermal performance comparison of a corrugated channel with t...
Turbulent forced convection flow in a 2-dimensional channel over periodic grooves is numerically inv...
In this paper, turbulent forced convection of nanofluids flow in triangular-corrugated channels is n...
AbstractIn this paper, turbulent forced convection of nanofluids flow in triangular-corrugated chann...
Numerical study of turbulent heat transfer of nanofluid through a corrugated channel is presented. T...
In this paper, turbulent forced convection of nanofluids flow in different configurations of trapezo...
In this paper, convective heat transfer of SiO2–water nanofluid flow in channels with different shap...
AbstractIn this paper, convective heat transfer of SiO2–water nanofluid flow in channels with differ...
Thermal and hydraulic characteristics of turbulent nanofluids flow in a trapezoidal-corrugated chann...
Thermal and hydraulic characteristics of turbulent nanofluids flow in a trapezoidal-corrugated chann...
In this study, the flow field and heat transfer of differents nanofluids (AL2O3, CuO, SiO2, ZnO), tu...
AbstractThe heat transfer and flow characteristics in corrugated with V-shape lower plate using nano...
A numerical investigation is performed to study the effects of different rib shapes and turbulent na...
A numerical study is carried out to investigate the effects of different geometrical parameters and ...
A numerical investigation is performed to study the effects of different rib shapes and turbulent na...
A numerical simulation is performed on thermal performance comparison of a corrugated channel with t...
Turbulent forced convection flow in a 2-dimensional channel over periodic grooves is numerically inv...