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A mathematical simulation of unsteady MHD Casson nanofluid flow subject to the influence of chemical reaction over a stretching surface: Buongiorno's model

Vinita Makkar, Tasawar Hayat, Ahmed Alsaedi

2021Heat Transfer20 citationsDOIOpen Access PDF

Abstract

Abstract In this study, unsteady boundary layer flow with Casson nanofluid within the sight of chemical reaction toward a stretching sheet has been analyzed mathematically. The fundamental motivation behind the present examination is to research the influence of different fluid parameters, in particular, Casson fluid , thermophoresis , magnetohydrodynamic , Brownian movement , Prandtl numberty, unsteadiness parameter , chemical reaction parameter , and Schmidt number on nanoparticle concentration, temperature, and velocity distribution. The shooting procedure has been adopted to solve transformed equations with the assistance of Runge–Kutta Fehlberg technique. The impact of different controlling fluid parameters on flow, heat, and mass transportation are depicted in tabular form and are shown graphically. Additionally, values of skin friction coefficient, Nusselt number, and Sherwood number are depicted via tables. Present consequences of the investigation for Nusselt number are related with existing results in writing by taking and where results are finding by utilization of MATLAB programming. Findings of current research help in controlling the rate of heat and mass aspects to make the desired quality of final product aiding manufacturing companies and industrial areas.

Topics & Concepts

NanofluidNusselt numberThermophoresisPrandtl numberMagnetohydrodynamic driveMechanicsSherwood numberFlow (mathematics)Boundary layerMaterials scienceThermodynamicsMagnetohydrodynamicsPhysicsHeat transferTurbulenceReynolds numberQuantum mechanicsPlasmaNanofluid Flow and Heat TransferHeat Transfer MechanismsFluid Dynamics and Turbulent Flows
A mathematical simulation of unsteady MHD Casson nanofluid flow subject to the influence of chemical reaction over a stretching surface: Buongiorno's model | Litcius