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The NANOFLUID FLOW BETWEEN PARALLEL PLATES AND HEAT TRANSFER IN PRESENCE OF CHEMICAL REACTION AND POROUS MATRIX

S. Jena, S. R. Mishra, Prasant Kumar Pattnaik, Ram Prakash Sharma

2020Latin American Applied Research - An international journal50 citationsDOIOpen Access PDF

Abstract

This paper deals with nanofluid flow between parallel plates and heat transfer through porous media with heat source /sink. The governing equations are transformed into self-similar ordinary differential equations by adopting similarity transformations and then the converted equations are solved numerically by Runge-Kutta fourth order method. Special emphasis has been given to the parameters of physical interest which include Prandtl number, magnetic parameter, porous matrix, chemical reaction parameter and heat source parameter. The results obtained for velocity, temperature and concentration are shown in graphs. The comparison of the special case of this present results with the existing numerical solutions in the literature shows excellent agreement.

Topics & Concepts

NanofluidPrandtl numberPorous mediumHeat transferOrdinary differential equationMechanicsMaterials scienceThermodynamicsPorosityDifferential equationMathematicsMathematical analysisPhysicsComposite materialNanofluid Flow and Heat TransferHeat Transfer and OptimizationHeat Transfer Mechanisms