Laminar mixed convection in a two-dimensional symmetrically and partially heated vertical channel is investigated. The heaters are located on both walls and uniform temperature is applied on the heated sections. The number of heaters is considered as 1, 4, 8, and 10. Aluminum oxide/water nanofluid is considered as working fluid and the inlet velocity is uniform. The continuity, momentum and energy equations with appropriate boundary conditions are solved in dimensionless form, numerically. The study is performed for Richardson number of 0.01 and 10, Reynolds number of 100 and 500, and nanofluid volume fraction of 0% and 5%. Based on the obtained velocity and temperature distributions, the local and mean Nusselt number is calculated and plot...
In this paper, results obtained by the numerical investigation on laminar mixed convection in triang...
Numerical simulation is performed to investigate the laminar force convection of Al2O3/water nanoflu...
AbstractThe laminar fully developed nanofluid flow and heat transfer in a vertical channel are inves...
Laminar mixed convection in a two-dimensional symmetrically and partially heated vertical channel is...
Laminar mixed convection in a two-dimensional symmetrically and partially heated vertical channel is...
Laminar mixed convection of an Al2O3/water nanofluid inside a vertical channel is investigated numer...
A numerical investigation on turbulent forced convection in nanofluid mixture, water-Al2O3, in a sym...
A numerical investigation on turbulent forced convection in nanofluid mixture, water-Al2O3, in a sym...
A numerical investigation on turbulent forced convection in nanofluid mixture, water-Al2O3, in a sym...
Laminar mixed convection heat transfer of a nanofluid with prescribed constant heat flux on the inne...
Laminar mixed convection heat transfer of a nanofluid with prescribed constant heat flux on the inne...
Laminar mixed Convection heat transfer of a nanofluid with prescribed constant heat flux on the inne...
ABSTRACT: Two experiments were carried out.first to study mixed convection Al2O3 water nano fluidins...
In this study, the effect of g-jitter fully developed heat transfer by mixed convection flow of nano...
In this paper, results obtained by the numerical investigation on laminar mixed convection in triang...
In this paper, results obtained by the numerical investigation on laminar mixed convection in triang...
Numerical simulation is performed to investigate the laminar force convection of Al2O3/water nanoflu...
AbstractThe laminar fully developed nanofluid flow and heat transfer in a vertical channel are inves...
Laminar mixed convection in a two-dimensional symmetrically and partially heated vertical channel is...
Laminar mixed convection in a two-dimensional symmetrically and partially heated vertical channel is...
Laminar mixed convection of an Al2O3/water nanofluid inside a vertical channel is investigated numer...
A numerical investigation on turbulent forced convection in nanofluid mixture, water-Al2O3, in a sym...
A numerical investigation on turbulent forced convection in nanofluid mixture, water-Al2O3, in a sym...
A numerical investigation on turbulent forced convection in nanofluid mixture, water-Al2O3, in a sym...
Laminar mixed convection heat transfer of a nanofluid with prescribed constant heat flux on the inne...
Laminar mixed convection heat transfer of a nanofluid with prescribed constant heat flux on the inne...
Laminar mixed Convection heat transfer of a nanofluid with prescribed constant heat flux on the inne...
ABSTRACT: Two experiments were carried out.first to study mixed convection Al2O3 water nano fluidins...
In this study, the effect of g-jitter fully developed heat transfer by mixed convection flow of nano...
In this paper, results obtained by the numerical investigation on laminar mixed convection in triang...
In this paper, results obtained by the numerical investigation on laminar mixed convection in triang...
Numerical simulation is performed to investigate the laminar force convection of Al2O3/water nanoflu...
AbstractThe laminar fully developed nanofluid flow and heat transfer in a vertical channel are inves...