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      Thermophysical Investigation of Oldroyd-B Fluid with Functional Effects of Permeability: Memory Effect Study Using Non-Singular Kernel Derivative Approach

      , , ,
      Fractal and Fractional
      MDPI AG

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          Abstract

          It is well established fact that the functional effects, such as relaxation and retardation of materials, can be measured for magnetized permeability based on relative increase or decrease during magnetization. In this context, a mathematical model is formulated based on slippage and non-slippage assumptions for Oldroyd-B fluid with magnetized permeability. An innovative definition of Caputo-Fabrizio time fractional derivative is implemented to hypothesize the constitutive energy and momentum equations. The exact solutions of presented problem, are determined by using mathematical techniques, namely Laplace transform with slipping boundary conditions have been invoked to tackle governing equations of velocity and temperature. The Nusselt number and limiting solutions have also been persuaded to estimate the heat emission rate through physical interpretation. In order to provide the validation of the problem, the absence of retardation time parameter led the investigated solutions with good agreement in literature. Additionally, comprehensively scrutinize the dynamics of the considered problem with parametric analysis is accomplished, the graphical illustration is depicted for slipping and non-slipping solutions for temperature and velocity. A comparative studies between fractional and non-fractional models describes that the fractional model elucidate the memory effects more efficiently.

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          New fractional derivatives with nonlocal and non-singular kernel: Theory and application to heat transfer model

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            • Article: not found

            Bioconvective MHD flow of tangent hyperbolic nanofluid with newtonian heating

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              • Record: found
              • Abstract: not found
              • Article: not found

              Variable magnetic forces impact on magnetizable hybrid nanofluid heat transfer through a circular cavity

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                Author and article information

                Contributors
                Journal
                Fractal and Fractional
                Fractal Fract
                MDPI AG
                2504-3110
                September 2021
                September 15 2021
                : 5
                : 3
                : 124
                Article
                10.3390/fractalfract5030124
                2f794a55-2243-47e4-998e-f10bb808da1e
                © 2021

                https://creativecommons.org/licenses/by/4.0/

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