In the present study, laminar forced convective nanofluid flow over a backward-facing step was numerically investigated. The bottom wall downstream of the step was flexible, and finite element method was used to solve the governing equations. The numerical simulation was performed for a range of Reynolds number (between 25 and 250), elastic modulus of the flexible wall (between and 10(4) and 10(6)), and solid particle volume fraction (between 0 and 0.035). It was observed that the flexibility of the bottom wall results in the variation of the fluid flow and heat transfer characteristics for the backward-facing step problem. As the value of Reynolds number and solid particle volume fraction enhances, local and average heat transfer rates inc...
In this article, the laminar mixed convection of Al2O3-Water nanofluid flow in a horizontal flat tub...
Laminar mixed convection flow over a 2D horizontal microscale backward-facing step (MBFS) placed in ...
Thermal performance of energy systems can be improved by adding metal or metal-oxide nanoparticles t...
Research in convective heat transfer on internal separated flows has been extensively conducted in t...
Predictions are reported for laminar mixed convection using various types of nanofluids over a horiz...
The laminar forced convection has been investigated for the flow of nanofluids in conventional strai...
Experimental and numerical studies were presented to reveal the flow and heat transfer characteristi...
Fundamental understanding on the enhancement of heat transfer rate and decreasing the maximum operat...
This paper presents a numerical study of heat transfer to turbulent and laminar Cu/water flow over a...
Numerical simulation of turbulent combined convective heat transfer of nanofluid flow over a two-dim...
In the present paper, laminar forced convection nanofluid flows in a uniformly heated horizontal tub...
In this paper, developing laminar forced convection flow of a water–Al2O3 nanofluid in a circular tu...
The forced convective heat transfer and friction factor of nanofluids flow over a backward-facing st...
This research investigates the laminar steady-forced convection heat transfer of a Cu-water nanoflui...
Backward facing step play a vital role in the design of many equipment and engineering applications ...
In this article, the laminar mixed convection of Al2O3-Water nanofluid flow in a horizontal flat tub...
Laminar mixed convection flow over a 2D horizontal microscale backward-facing step (MBFS) placed in ...
Thermal performance of energy systems can be improved by adding metal or metal-oxide nanoparticles t...
Research in convective heat transfer on internal separated flows has been extensively conducted in t...
Predictions are reported for laminar mixed convection using various types of nanofluids over a horiz...
The laminar forced convection has been investigated for the flow of nanofluids in conventional strai...
Experimental and numerical studies were presented to reveal the flow and heat transfer characteristi...
Fundamental understanding on the enhancement of heat transfer rate and decreasing the maximum operat...
This paper presents a numerical study of heat transfer to turbulent and laminar Cu/water flow over a...
Numerical simulation of turbulent combined convective heat transfer of nanofluid flow over a two-dim...
In the present paper, laminar forced convection nanofluid flows in a uniformly heated horizontal tub...
In this paper, developing laminar forced convection flow of a water–Al2O3 nanofluid in a circular tu...
The forced convective heat transfer and friction factor of nanofluids flow over a backward-facing st...
This research investigates the laminar steady-forced convection heat transfer of a Cu-water nanoflui...
Backward facing step play a vital role in the design of many equipment and engineering applications ...
In this article, the laminar mixed convection of Al2O3-Water nanofluid flow in a horizontal flat tub...
Laminar mixed convection flow over a 2D horizontal microscale backward-facing step (MBFS) placed in ...
Thermal performance of energy systems can be improved by adding metal or metal-oxide nanoparticles t...