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Hybrid Isothermal Model for the Ferrohydrodynamic Chemically Reactive Species
Authors:Noor Muhammad  SNadeem  MTMustafa
Institution:1.Department of Mathematics, Quaid-I-Azam University 45320, Islamabad 44000, Pakistan2 Department of Mathematics, Statistics & Physics, Qatar University, Doha 2713, Qatar
Abstract:A hybrid isothermal model for the homogeneous-heterogeneous reactions in ferrohydrodynamic boundary layer flow is established. The characteristics of Newtonian heating and magnetic dipole in a ferrofluid due to a stretchable surface is analyzed for three chemical species. It is presumed that the isothermal cubic autocatalator kinetic gives the homogeneous reaction and the first order kinetics gives the heterogeneous (surface) reaction. The analysis is carried out for equal diffusion coefficients of all autocatalyst and reactions. Heat flux is examined by incorporating Fourier's law of heat conduction. Characteristics of materialized parameters on the magneto-thermomechanical coupling in the flow of a chemically reactive species are investigated. Further, the heat transfer rate and friction drag are depicted for the ferrohydrodynamic chemically reactive species. It is evident that the Schmidt number has increasing behavior on the rate of heat transfer in the boundary layer. Comparison with available results for specific cases is found an excellent agreement.
Keywords:ferromagnetic fluid  hybrid chemically reactive species  Newtonian heating  heat transfer  friction drag  
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