Enhancement of buoyancy-driven convection heat transfer within vertical cavities containing nanofluids subjected to different side wall temperatures and various aspect ratios is investigated. The computations are based on an iterative, finitevolume numerical procedure (SIMPLE) that incorporates the Boussinesq approximation to simulate the buoyancy term. With the base fluid being water, three different nanoparticles (Cu, TiO 2 , and Al 2 O 3 ) are considered as the nanofluids. This study has been carried out for the pertinent parameters in the following ranges: the Rayleigh number, Ra f = 10 5 –10 7 and the volumetric fraction of nanoparticle between 0 and 5 percent. The results are presented for different length-to-height ratios varying fro...
In this study, steady-state laminar natural convection of Cu and TiO2 nanofluids inside different en...
This article consists of a numerical study of natural convection heat transfer in three-dimensional ...
The present work aims at studying natural convection of nanofluids in a square enclosure embedded wi...
Copyright © 2014 M. Alipanah et al. This is an open access article distributed under the Creative Co...
This paper analyses the heat transfer performance and fluid flow using different nanofluids in a squ...
This paper analyses the heat transfer performance and fluid flow using different nanofluids in a squ...
This paper analyses the heat transfer performance and fluid flow using different nanofluids in a squ...
This paper analyses the heat transfer performance and fluid flow using different nanofluids in a squ...
This paper analyses the heat transfer performance and fluid flow using different nanofluids in a squ...
In this paper, a numerical study of natural convection in a square enclosure with non-uniform temper...
Numerical investigations are performed into the natural convection heat transfer characteristics wi...
In the present paper a numerical study of natural turbulent convection in a tall cavity filled wi...
This paper investigates the natural convection heat transfer enhancement of Al2O3-water nanofluid in...
Abstract The present work introduces the use of E-shaped enclosure for heat transfer applications. N...
AbstractThis paper analyzes heat transfer and fluid flow of natural convection in inclined cavity fi...
In this study, steady-state laminar natural convection of Cu and TiO2 nanofluids inside different en...
This article consists of a numerical study of natural convection heat transfer in three-dimensional ...
The present work aims at studying natural convection of nanofluids in a square enclosure embedded wi...
Copyright © 2014 M. Alipanah et al. This is an open access article distributed under the Creative Co...
This paper analyses the heat transfer performance and fluid flow using different nanofluids in a squ...
This paper analyses the heat transfer performance and fluid flow using different nanofluids in a squ...
This paper analyses the heat transfer performance and fluid flow using different nanofluids in a squ...
This paper analyses the heat transfer performance and fluid flow using different nanofluids in a squ...
This paper analyses the heat transfer performance and fluid flow using different nanofluids in a squ...
In this paper, a numerical study of natural convection in a square enclosure with non-uniform temper...
Numerical investigations are performed into the natural convection heat transfer characteristics wi...
In the present paper a numerical study of natural turbulent convection in a tall cavity filled wi...
This paper investigates the natural convection heat transfer enhancement of Al2O3-water nanofluid in...
Abstract The present work introduces the use of E-shaped enclosure for heat transfer applications. N...
AbstractThis paper analyzes heat transfer and fluid flow of natural convection in inclined cavity fi...
In this study, steady-state laminar natural convection of Cu and TiO2 nanofluids inside different en...
This article consists of a numerical study of natural convection heat transfer in three-dimensional ...
The present work aims at studying natural convection of nanofluids in a square enclosure embedded wi...