The main objective of this work is to examine the heat transfer changes induced by the presence of heat generating obstacles and that for non-Newtonian fluid flow within a parallel plate channel. The effects of the two obstacle height and the distance between them, on the flow structure and Nusselt number are examined. The Finite Volume Method is used to discretize the conservation equations of mass, momentum, and energy. The SIMPLER algorithm is applied to remove the checkerboard pressure problem. The results are discussed in terms of streamlines and the Nusselt number for three combinations of height and separation distance of the two obstacles. Two recirculation zones are observed for all the cases with different intensity varying with t...
Using the fully developed laminar velocity distributions obtained by applying the modified power-law...
Heat transfer and laminar fluid flow over backward facing step with and without obstacle numerically...
Forced convection heat transfer in a non-Newtonian fluid flow between parallel plates subjected to h...
Abstract. In this study, the mixed convection heat transfer and the fluid flow in the Poiseulle–Bena...
AbstractIt is aimed to study forced convection heat transfer for non-Newtonian power-law fluids in a...
The purpose of this research is to examine the velocity and temperature distribution in a vertical h...
A two-dimensional numerical study has been carried out to investigate the drag and Nusselt number ch...
Purpose–The purpose of this paper is to analyze the thermal and fluid dynamic behaviors of mixed con...
Forced convection heat transfer characteristics of a long, heated square cylinder blocking the flow ...
The study of heat transfer on shear flows around an obstacle presents a great interest in determinat...
In the present work, a numerical study has been conducted to investigate the flow heat transfer t...
The periodically fully developed laminar heat transfer and pressure drop of arrays with non-uniform ...
This paper addresses the natural convection behavior of air when heated in single vertical, parallel...
Heat transfer of a power-law non-Newtonian incompressible fluid in channels with porous walls has no...
Heat transfer and fluid flow in the rectangular channel with an obstacle are considered. The problem...
Using the fully developed laminar velocity distributions obtained by applying the modified power-law...
Heat transfer and laminar fluid flow over backward facing step with and without obstacle numerically...
Forced convection heat transfer in a non-Newtonian fluid flow between parallel plates subjected to h...
Abstract. In this study, the mixed convection heat transfer and the fluid flow in the Poiseulle–Bena...
AbstractIt is aimed to study forced convection heat transfer for non-Newtonian power-law fluids in a...
The purpose of this research is to examine the velocity and temperature distribution in a vertical h...
A two-dimensional numerical study has been carried out to investigate the drag and Nusselt number ch...
Purpose–The purpose of this paper is to analyze the thermal and fluid dynamic behaviors of mixed con...
Forced convection heat transfer characteristics of a long, heated square cylinder blocking the flow ...
The study of heat transfer on shear flows around an obstacle presents a great interest in determinat...
In the present work, a numerical study has been conducted to investigate the flow heat transfer t...
The periodically fully developed laminar heat transfer and pressure drop of arrays with non-uniform ...
This paper addresses the natural convection behavior of air when heated in single vertical, parallel...
Heat transfer of a power-law non-Newtonian incompressible fluid in channels with porous walls has no...
Heat transfer and fluid flow in the rectangular channel with an obstacle are considered. The problem...
Using the fully developed laminar velocity distributions obtained by applying the modified power-law...
Heat transfer and laminar fluid flow over backward facing step with and without obstacle numerically...
Forced convection heat transfer in a non-Newtonian fluid flow between parallel plates subjected to h...