The purpose of the current study is to numerically investigate the effects of shape factors of nanoparticles on natural convection in a fluid-saturated porous annulus developed between the elliptical cylinder and square enclosure. A numerical method called the control volume-based finite element method is implemented for solving the governing equations. The modified flow and thermal structures and corresponding heat transfer features are investigated. Numerical outcomes reveal very good grid independency and excellent agreement with the existing studies. The obtained results convey that at a certain aspect ratio, an increment in Rayleigh and Darcy numbers significantly augments the heat transfer and average Nusselt number. Further, enhancem...
In this work, free convection of Cu-water nanofluid in an enclosure by considering internally heat g...
A two-dimensional steady laminar natural convection in rectangular enclosure filled with CuO-water n...
Heatline visualization technique is used to understand heat transport path in an inclined non-unifor...
The enhancement of natural convection heat transfer using nanofluids from horizontal square cylinder...
The enhancement of natural convection heat transfer using nanofluids from horizontal square cylinder...
AbstractThe existing work is focused on the numerical modelling of mixed convection of Cu-water nano...
In this investigation, the Control Volume based Finite Element Method (CVFEM) is used to simulate th...
In this investigation, the Control Volume based Finite Element Method (CVFEM) is used to simulate th...
AbstractIn this investigation, the Control Volume based Finite Element Method (CVFEM) is used to sim...
AbstractThis paper analyzes heat transfer and fluid flow of natural convection in inclined cavity fi...
The hydrothermal significance of natural convection flow through the horizontal annulus reveal most ...
The heat transfer by natural convection of nanofluid inside a horizontal cavity heated from below (R...
The free convection heat transfer of Cu-water nanofluids in a parallelogrammic enclosure filled with...
This paper consists on a three-dimensional numerical approach of natural convection in a cavity cont...
In this article, numerical simulation is performed for mixed convection lid-driven flow of CuO-water...
In this work, free convection of Cu-water nanofluid in an enclosure by considering internally heat g...
A two-dimensional steady laminar natural convection in rectangular enclosure filled with CuO-water n...
Heatline visualization technique is used to understand heat transport path in an inclined non-unifor...
The enhancement of natural convection heat transfer using nanofluids from horizontal square cylinder...
The enhancement of natural convection heat transfer using nanofluids from horizontal square cylinder...
AbstractThe existing work is focused on the numerical modelling of mixed convection of Cu-water nano...
In this investigation, the Control Volume based Finite Element Method (CVFEM) is used to simulate th...
In this investigation, the Control Volume based Finite Element Method (CVFEM) is used to simulate th...
AbstractIn this investigation, the Control Volume based Finite Element Method (CVFEM) is used to sim...
AbstractThis paper analyzes heat transfer and fluid flow of natural convection in inclined cavity fi...
The hydrothermal significance of natural convection flow through the horizontal annulus reveal most ...
The heat transfer by natural convection of nanofluid inside a horizontal cavity heated from below (R...
The free convection heat transfer of Cu-water nanofluids in a parallelogrammic enclosure filled with...
This paper consists on a three-dimensional numerical approach of natural convection in a cavity cont...
In this article, numerical simulation is performed for mixed convection lid-driven flow of CuO-water...
In this work, free convection of Cu-water nanofluid in an enclosure by considering internally heat g...
A two-dimensional steady laminar natural convection in rectangular enclosure filled with CuO-water n...
Heatline visualization technique is used to understand heat transport path in an inclined non-unifor...