Publication | Open Access
Lattice Boltzmann simulation of natural convection in an L-shaped enclosure in the presence of nanofluid
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Citations
44
References
2015
Year
EngineeringFluid MechanicsConvective Heat TransferHeat Transfer ProcessFluid PropertiesMixed ConvectionNumerical SimulationL-shaped EnclosureTransport PhenomenaThermodynamicsNatural ConvectionPhysicsLattice Boltzmann SimulationThermal TransportNanofluidicsRayleigh NumberHeat TransferLattice Boltzmann MethodMultiphase FlowHeat Transfer EnhancementThermal EngineeringThermo-fluid Systems
In the present paper, fluid flow and heat transfer inside L-shaped enclosure filled with Cu/water nanofluid has been investigated numerically using the Lattice Boltzmann Method. The validity of the numerical code used is ascertained and good agreement was found with published results. The effects of different parameters such as Rayleigh number (103–106), aspect ratio of the L-shaped enclosure (0.2–0.6) and nanoparticle volume concentration (0–0.05) on the flow and temperature fields are studied. The obtained results show that nanofluid enhances the heat transfer amount and reducing the aspect ratio improves this effect. Also it was found that the mean Nusselt number increased with increase in Rayleigh number.
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