Publication | Open Access
Second Law Analysis of Laminar Flow In A Channel Filled With Saturated Porous Media
58
Citations
23
References
2005
Year
EngineeringFluid MechanicsPorous Medium EquationsSecond Law AnalysisConvective Heat TransferPorous BodyHeat Transfer ProcessFluid PropertiesA Channel FilledMixed ConvectionTransport PhenomenaThermodynamicsNatural ConvectionEntropy Generation RateFlow PhysicDisperse FlowHeat TransferPore StructureTurbulent Flow Heat TransferCivil EngineeringPorositySaturated Porous MediaFluid Friction IrreversibilityThermal EngineeringThermo-fluid Systems
The entropy generation rate in a laminar flow through a channel filled with saturated porous media is investigated. The upper surface of the channel is adiabatic and the lower wall is assumed to have a constant heat flux. The Brinkman model is employed. Velocity and temperature profiles are obtained for large Darcy number (Da) and used to obtain the entropy generation number and the irreversibility ratio. Generally, our result shows that heat transfer irreversibility dominates over fluid friction irreversibility (i.e. 0 < ø < 1), and viscous dissipation has no effect on the entropy generation rate at the centerline of the channel.
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