Entropy · 2006 · 98 citations · 33 references
Heat Transfer ProcessEngineeringSteady StateMixed ConvectionSecond Law AnalysisNumerical SimulationInclined EnclosureTransport PhenomenaThermodynamicsThermal ModelingHeat TransferNatural ConvectionThermal EngineeringConvective Heat TransferFluid Friction
This paper reports the numerical determination of the entropy generation due to heat transfer, mass transfer and fluid friction in steady state for laminar double diffusive convection, in an inclined enclosure with heat and mass diffusive walls, by solving numerically the mass, momentum, species conservation and energy balance equations, using a Control Volume Finite-Element Method. The influences of the inclination angle, the thermal Grashof number and the buoyancy ratio on total entropy generation were investigated. The irreversibilities localization due to heat transfer, mass transfer and fluid friction is discussed for three inclination angles at a fixed thermal Grashof number.
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<i>Molecular Theory of Gases and Liquids</i>
Joseph O. Hirschfelder, C. F. Curtiss, R. Byron Bird · Physics Today · 1955 · 11.4K citations