Application of nanofluids for heat transfer enhancement of separated flows encountered in a backward facing step
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- Type
- article
- Published
- 2008-02-01
- Cited by
- 479
- References
- 23
- OpenAlex
- https://openalex.org/W2074924307
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:32920539
Keywords
Nusselt number, Nanofluid, Materials science, Heat transfer, Heat transfer enhancement
References
- An introduction to computational fluid dynamics - the finite volume method
- Computational fluid dynamics : the basics with applications
- A critical review of convective heat transfer of nanofluids
- Heat transfer characteristics of nanofluids: a review
- Critical review of heat transfer characteristics of nanofluids
- Reattachment of Three-Dimensional Flow Adjacent to Backward-Facing Step
- Laminar Mixed Convection Adjacent to Three-Dimensional Backward-Facing Step
- Application of a Fractional-Step Method to Incompressible Navier-Stokes Equations
- A test problem for outflow boundary conditions—flow over a backward-facing step
- The Viscosity of Concentrated Suspensions and Solutions
- A review of research on laminar mixed convection flow over backward- and forward-facing steps
- Sidewall effects in flow over a backward-facing step: Experiments and numerical simulations
- Heat Transfer and Fluid Flow Characteristics of Separated Flows Encountered in a Backward-Facing Step Under the Effect of Suction and Blowing
- Effect of stepheight on the separated flow past a backward facing step
- Experimental and theoretical investigation of backward-facing step flow
- Numerical simulations of laminar flow over a 3D backward‐facing step
- BUOYANCY-DRIVEN HEAT TRANSFER ENHANCEMENT IN A TWO-DIMENSIONAL ENCLOSURE UTILIZING NANOFLUIDS
- Investigation on Convective Heat Transfer and Flow Features of Nanofluids
- Entropy generation due to heat and fluid flow in backward facing step flow with various expansion ratios
- Enhancing Thermal Conductivity of Fluids With Nanoparticles
Cited by
- Boundary layer flow past a stretching/shrinking surface beneath an external uniform shear flow with a convective surface boundary condition in a nanofluid
- Marangoni-driven boundary layer flow in nanofluids
- Thermal dispersion effect on fully developed free convection of nanofluids in a vertical channel
- Numerical simulations of thermal systems -- Applications to fuel chemistry, nanofluid heat transfer and aerosol particle transport.
- Mixed convection flow about a solid sphere embedded in a porous medium filled with a nanofluid
- Investigation of Heat Transfer Augmentation from U-Longitudinal Finned Tube Heat Exchanger
- Second Law Analysis of Buoyancy Driven Unsteady Channel Flow of Nanofluids with Convective Cooling
- MHD Marangoni boundary layer flow and heat transfer of pseudo-plastic nanofluids over a porous medium with a modified model
- Heat and mass transfer of nanofluid through an impulsively vertical stretching surface using the spectral relaxation method
- Mixed Convection over an Inclined Wavy Surface in a Nanofluid Saturated Non-Darcy Porous Medium with Radiation Effect
- Experimental and numerical heat transfer studies of nanofluids with an emphasis on nuclear fusion applications
- Magnetohydrodynamic (MHD) mixed convection stagnation point flow of a nanofluid over a vertical plate with viscous dissipation
- AN ANALYSIS OF A FLUID FLOW IN A CHANNEL WITH UNIFORM HEATED WALLS
- Numerical investigations on the turbulent forced convection of nanofluids flow in a triangular-corrugated channel
- The effect of nanofluids flow on mixed convection heat transfer over microscale backward-facing step
- Natural convection from a vertical permeable cone in a nanofluid saturated porous media for uniform heat and nanoparticles volume fraction fluxes
- Unsteady flow and heat transfer of pseudo-plastic nanoliquid in a finite thin film on a stretching surface with variable thermal conductivity and viscous dissipation
- Falkner–Skan problem for a static or moving wedge in nanofluids
- Stagnation-point flow of a nanofluid towards a stretching sheet
- The effect of step height of microscale backward-facing step on mixed convection nanofluid flow and heat transfer characteristics
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