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      Dual solutions for magnetic-convective-quadratic radiative MoS 2 − SiO 2/H 2O hybrid nanofluid flow in Darcy-Fochheimer porous medium in presence of second-order slip velocity through a permeable shrinking surface: Entropy and stability analysis

      1 , 2
      International Journal of Modelling and Simulation
      Informa UK Limited

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          Most cited references48

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          On dual solutions occurring in mixed convection in a porous medium

          J H Merkin (1986)
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            Mixed Convection Boundary-Layer Flow Near the Stagnation Point on a Vertical Surface in a Porous Medium: Brinkman Model with Slip

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              Entropy Generation and Consequences of Binary Chemical Reaction on MHD Darcy–Forchheimer Williamson Nanofluid Flow Over Non-Linearly Stretching Surface

              The current article aims to present a numerical analysis of MHD Williamson nanofluid flow maintained to flow through porous medium bounded by a non-linearly stretching flat surface. The second law of thermodynamics was applied to analyze the fluid flow, heat and mass transport as well as the aspects of entropy generation using Buongiorno model. Thermophoresis and Brownian diffusion is considered which appears due to the concentration and random motion of nanoparticles in base fluid, respectively. Uniform magnetic effect is induced but the assumption of tiny magnetic Reynolds number results in zero magnetic induction. The governing equations (PDEs) are transformed into ordinary differential equations (ODEs) using appropriately adjusted transformations. The numerical method is used for solving the so-formulated highly nonlinear problem. The graphical presentation of results highlights that the heat flux receives enhancement for augmented Brownian diffusion. The Bejan number is found to be increasing with a larger Weissenberg number. The tabulated results for skin-friction, Nusselt number and Sherwood number are given. A decent agreement is noted in the results when compared with previously published literature on Williamson nanofluids.
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                Author and article information

                Journal
                International Journal of Modelling and Simulation
                International Journal of Modelling and Simulation
                Informa UK Limited
                0228-6203
                1925-7082
                June 29 2023
                : 1-27
                Affiliations
                [1 ]Siksha Satra, Visva-Bharati University, West Bengal, India
                [2 ]Department of Mathematics, Visva-Bharati University, West Bengal, India
                Article
                10.1080/02286203.2023.2222464
                bc131641-fedd-4f69-a9a6-0bfcef9f861f
                © 2023
                History

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