The periodic mixed convection of a water-copper nanofluid inside a rectangular cavity with aspect ratio of 3 is investigated numerically. The temperature of the bottom wall of the cavity is assumed greater than the temperature of the top lid which oscillates horizontally with the velocity defined as u = u0 sin (ω t). The effects of Richardson number, Ri, and volume fraction of nanoparticles on the flow and thermal behavior of the nanofluid are investigated. Velocity and temperature profiles, streamlines and isotherms are presented. It is observed that when Ri < 1, heat transfer rate is much greater than when Ri > 1. The higher value of Ri corresponds to a lower value of the amplitude of the oscillation of Num in the steady periodic state. M...
Laminar mixed convection heat transfer in a lid driven square cavity filled with nanofluids is inves...
This paper examines the periodic natural convection in an enclosure filled with nanofluids. Whilst a...
AbstractThis study investigates natural convective heat transfer of copper–water nanofluids in a squ...
Copyright © 2013 Hassan El Harfi et al. This is an open access article distributed under the Creativ...
A numerical investigation of steady laminar mixed convection flow of a Copper-water nanofluid in a l...
A numerical investigation of mixed convection flows through a copper-water nanofluid in a lid-driven...
In this article, mixed convection fl ow in a two-sided lid-driven cavity at diff erent inclination a...
A numerical study of the unsteady mixed convection heat transfer characteristics of an Ag–water nano...
AbstractIn the present study, mixed convection heat transfer inside a square cavity filled with Cu-w...
This paper reports a numerical study of mixed convection in a square enclosure, filled wit...
This paper reports a numerical study on mixed convection within a square enclosure, filled with a mi...
In this paper, a new approach is used for numerical analysis of the sole effects of nanoparticles...
This article consists of a numerical study of natural convection heat transfer in three-dimensional ...
In the present paper a numerical study of natural turbulent convection in a tall cavity filled wi...
This study investigates natural convective heat transfer of copper–water nanofluids in a square encl...
Laminar mixed convection heat transfer in a lid driven square cavity filled with nanofluids is inves...
This paper examines the periodic natural convection in an enclosure filled with nanofluids. Whilst a...
AbstractThis study investigates natural convective heat transfer of copper–water nanofluids in a squ...
Copyright © 2013 Hassan El Harfi et al. This is an open access article distributed under the Creativ...
A numerical investigation of steady laminar mixed convection flow of a Copper-water nanofluid in a l...
A numerical investigation of mixed convection flows through a copper-water nanofluid in a lid-driven...
In this article, mixed convection fl ow in a two-sided lid-driven cavity at diff erent inclination a...
A numerical study of the unsteady mixed convection heat transfer characteristics of an Ag–water nano...
AbstractIn the present study, mixed convection heat transfer inside a square cavity filled with Cu-w...
This paper reports a numerical study of mixed convection in a square enclosure, filled wit...
This paper reports a numerical study on mixed convection within a square enclosure, filled with a mi...
In this paper, a new approach is used for numerical analysis of the sole effects of nanoparticles...
This article consists of a numerical study of natural convection heat transfer in three-dimensional ...
In the present paper a numerical study of natural turbulent convection in a tall cavity filled wi...
This study investigates natural convective heat transfer of copper–water nanofluids in a square encl...
Laminar mixed convection heat transfer in a lid driven square cavity filled with nanofluids is inves...
This paper examines the periodic natural convection in an enclosure filled with nanofluids. Whilst a...
AbstractThis study investigates natural convective heat transfer of copper–water nanofluids in a squ...