Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion is studied in this paper. Such flows occur in various engineering and heat transfer applications. Computational fluid dynamics package (FLUENT) is used to investigate turbulent nanofluid flow in the horizontal double-tube heat exchanger. The meshing of this model consists of 43383 nodes and 74891 elements. Only a quarter of the annular pipe is developed and simulated as it has symmetrical geometry. Standard k-epsilon second order implicit, pressure based-solver equation is applied. Reynolds numbers between 17050 and 44545, step height ratio of 1 and 1.82 and constant heat flux of 49050 W/m2 was utilized in the simulation. Water was used as a working fl...
The energy crises in the worldwide have been encouraging the researchers to look for new methods whi...
AbstractSingle and multi-phase numerical simulations are carried out to investigate the heat transfe...
Backward facing step play a vital role in the design of many equipment and engineering applications ...
Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion is studied...
Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion is studied...
Abstract. Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion ...
Investigation of flow separation and reattachment of 0.2% water-based TiO2 nanofluid in an annular s...
Investigation of flow separation and reattachment of 0.2% water-based TiO2 nanofluid in an annular s...
Turbulent heat transfer to separation nanofluid flow in annular concentric pipe has been studied num...
This study was focus on the flow separation phenomena of annular passage which appears in a number o...
Turbulent heat transfer to separation nanofluid flow in annular concentric pipe were studied numeric...
Simulation by convenient software same as FLUENT was used to predict the friction factor and Nusselt...
Titania-based nanofluid flowing inside a circular tube under the boundary condition of a horizontal ...
This study presents a quantitative investigation regarding the thermal performance ofinserting two t...
This work includes the effect of different working fluid on the performance of heat exchanger. For a...
The energy crises in the worldwide have been encouraging the researchers to look for new methods whi...
AbstractSingle and multi-phase numerical simulations are carried out to investigate the heat transfe...
Backward facing step play a vital role in the design of many equipment and engineering applications ...
Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion is studied...
Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion is studied...
Abstract. Flow separation and reattachment of 0.2% TiO2 nanofluid in an asymmetric abrupt expansion ...
Investigation of flow separation and reattachment of 0.2% water-based TiO2 nanofluid in an annular s...
Investigation of flow separation and reattachment of 0.2% water-based TiO2 nanofluid in an annular s...
Turbulent heat transfer to separation nanofluid flow in annular concentric pipe has been studied num...
This study was focus on the flow separation phenomena of annular passage which appears in a number o...
Turbulent heat transfer to separation nanofluid flow in annular concentric pipe were studied numeric...
Simulation by convenient software same as FLUENT was used to predict the friction factor and Nusselt...
Titania-based nanofluid flowing inside a circular tube under the boundary condition of a horizontal ...
This study presents a quantitative investigation regarding the thermal performance ofinserting two t...
This work includes the effect of different working fluid on the performance of heat exchanger. For a...
The energy crises in the worldwide have been encouraging the researchers to look for new methods whi...
AbstractSingle and multi-phase numerical simulations are carried out to investigate the heat transfe...
Backward facing step play a vital role in the design of many equipment and engineering applications ...