The main objective of our work is to light out the three-dimensional flow of an Ag-water nanofluid within a lid-driven cubical space which equipped with a spherical heater into its center. Due to its crucial role in the characterization of the main transfer within such configurations, impact of some parameters is widely inspected. It consists the Richardson value (0,05 to 50), the solid volume fraction (0% to 10%), as well as the heater geometry (10% ≤ d ≤ 25%). To do so, a numerical code based on the Lattice-Boltzmann method, coupled with a finite difference one, is used. The latter has been validated after comparison between the present results and those of the literature. It is to note that the three dimensions D3Q19 model is adopted bas...
In the present study, a three dimensional thermal lattice Boltzmann model was developed to investiga...
Numerical simulation of natural convection in a nanofluids-filled partitioned square cavity is prese...
Copyright © 2012 J. Guiet et al. This is an open access article distributed under the Creative Commo...
The main objective of our work is to light out the three-dimensional flow of an Ag-water nanofluid w...
This article consists of a numerical study of natural convection heat transfer in three-dimensional ...
The behavior of nanofluids is investigated numerically in an inclined lid-driven triangular enclosur...
Mixed heat convection of three-dimensional unsteady flow of four different types of fluids in a doub...
This paper reports a numerical study of mixed convection in a square enclosure, filled wit...
Convective heat transfer using nanofluids play an important role in thermal applications such as hea...
The present investigation is set to evaluate the nanofluid thermogravitational convection within a Γ...
The behavior of nanofluids is investigated numerically in an inclined lid-driven triangular enclosur...
In the present study, natural convection of nanofluids in a concentric horizontal annulus enclosure ...
Abstract In the present paper, nanofluid mixed convection is investigated in a square cavity with an...
In this study, mixed convection heat transfer of water-Cu nanofluid in a double lid-driven cavity ha...
AbstractIn the present paper, fluid flow and heat transfer inside L-shaped enclosure filled with Cu/...
In the present study, a three dimensional thermal lattice Boltzmann model was developed to investiga...
Numerical simulation of natural convection in a nanofluids-filled partitioned square cavity is prese...
Copyright © 2012 J. Guiet et al. This is an open access article distributed under the Creative Commo...
The main objective of our work is to light out the three-dimensional flow of an Ag-water nanofluid w...
This article consists of a numerical study of natural convection heat transfer in three-dimensional ...
The behavior of nanofluids is investigated numerically in an inclined lid-driven triangular enclosur...
Mixed heat convection of three-dimensional unsteady flow of four different types of fluids in a doub...
This paper reports a numerical study of mixed convection in a square enclosure, filled wit...
Convective heat transfer using nanofluids play an important role in thermal applications such as hea...
The present investigation is set to evaluate the nanofluid thermogravitational convection within a Γ...
The behavior of nanofluids is investigated numerically in an inclined lid-driven triangular enclosur...
In the present study, natural convection of nanofluids in a concentric horizontal annulus enclosure ...
Abstract In the present paper, nanofluid mixed convection is investigated in a square cavity with an...
In this study, mixed convection heat transfer of water-Cu nanofluid in a double lid-driven cavity ha...
AbstractIn the present paper, fluid flow and heat transfer inside L-shaped enclosure filled with Cu/...
In the present study, a three dimensional thermal lattice Boltzmann model was developed to investiga...
Numerical simulation of natural convection in a nanofluids-filled partitioned square cavity is prese...
Copyright © 2012 J. Guiet et al. This is an open access article distributed under the Creative Commo...