PURPOSE : The purpose of this paper is to investigate the heat transfer of laminar and turbulent pulsating Al203/water nanofluid flow in a two-dimensional channel. In the laminar flow range, with increasing Reynolds number (Re), the velocity gradient is increased. Also, the Nusselt number (Nu) is increased, which causes increase in the overall heat transfer rate. Additionally, in the change of flow regime from laminar to turbulent, average thermal flux and pulsation range are increased. Also, the effect of different percentage of Al2O3/water nanofluid is investigated. The results show that the addition of nanofluids improve thermal performance in channel, but the using of nanofluid causes a pressure drop in the channel. DESIGN/METHODOLOGY/...
A study of computational fluid dynamics has been conducted to study the characteristics of the heat ...
This paper studies hydrodynamic and heat transfer performance of Al2O3/H2O nanofluid flowing through...
This paper studies hydrodynamic and heat transfer performance of Al2O3/H2O nanofluid flowing through...
WOS: 000347500800003In this study, the heat transfer characteristics of Al2O3-water based nanofluids...
PURPOSE : The purpose of this study is to investigate the pulsating flow in a three-dimensional chan...
Purpose – The purpose of the present study is to numerically investigate the characteristics of lami...
This research presents the numerical results of laminar forced convective heat transfer performance ...
Purpose: The purpose of this paper is to carry out a numerical investigation to study laminar convec...
The objective of this study is to numerically investigate the convective heat transfer of water-base...
The objective of this study is to numerically investigate the convective heat transfer of water-base...
ASME International Mechanical Engineering Congress and Exposition (IMECE2013) -- NOV 15-21, 2013 -- ...
A study of computational fluid dynamics has been conducted to study the characteristics of the heat ...
A study of computational fluid dynamics has been conducted to study the characteristics of the heat ...
This study numerically investigates heat transfer augmentation using water-based Al2O3 and CuO nanof...
We propose a numerical analysis of developing forced laminar convection flow of Al2O3-water nanoflui...
A study of computational fluid dynamics has been conducted to study the characteristics of the heat ...
This paper studies hydrodynamic and heat transfer performance of Al2O3/H2O nanofluid flowing through...
This paper studies hydrodynamic and heat transfer performance of Al2O3/H2O nanofluid flowing through...
WOS: 000347500800003In this study, the heat transfer characteristics of Al2O3-water based nanofluids...
PURPOSE : The purpose of this study is to investigate the pulsating flow in a three-dimensional chan...
Purpose – The purpose of the present study is to numerically investigate the characteristics of lami...
This research presents the numerical results of laminar forced convective heat transfer performance ...
Purpose: The purpose of this paper is to carry out a numerical investigation to study laminar convec...
The objective of this study is to numerically investigate the convective heat transfer of water-base...
The objective of this study is to numerically investigate the convective heat transfer of water-base...
ASME International Mechanical Engineering Congress and Exposition (IMECE2013) -- NOV 15-21, 2013 -- ...
A study of computational fluid dynamics has been conducted to study the characteristics of the heat ...
A study of computational fluid dynamics has been conducted to study the characteristics of the heat ...
This study numerically investigates heat transfer augmentation using water-based Al2O3 and CuO nanof...
We propose a numerical analysis of developing forced laminar convection flow of Al2O3-water nanoflui...
A study of computational fluid dynamics has been conducted to study the characteristics of the heat ...
This paper studies hydrodynamic and heat transfer performance of Al2O3/H2O nanofluid flowing through...
This paper studies hydrodynamic and heat transfer performance of Al2O3/H2O nanofluid flowing through...