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      Bioconvection in the Rheology of Magnetized Couple Stress Nanofluid Featuring Activation Energy and Wu’s Slip

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          Abstract

          In order to meet the current challenges in the fabrication of nanobiomaterials and enhancement of thermal extrusion systems, current theoretical continuation is targeted at the rheology of couple stress nanofluid by exploiting activation energy, porous media, thermal radiation, gyrotactic micro-organisms, and convective Nield boundary conditions. The heat and mass performances of nanofluid are captured with an evaluation of the famous Buongiorno model, which enables us to determine the attractive features of Brownian motion and thermophoretic diffusion. The couple stress fluid is beneficial to examine multiple kinds of physical problems because this fluid model has the capability to describe the rheology of various complex fluids, e. g., fluids having long-chain molecules as a polymeric suspension, liquid crystals, lubricants, and human and animal blood. Simultaneous behavior of the magnetic field and porosity are studied with thermal radiation effects. The distribution of velocity has been conducted by using second-order velocity slip (Wu’s slip) and activation energy features. For the dimensionless purpose, the similarity variable has been initiated, and the modeled equations are renovated sufficiently. A famous shooting method is used to determine the numerical solutions, and accurate results have been obtained. A variety of critical flow parameters is graphically illustrated with physical significance.

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          Most cited references32

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          Convective Transport in Nanofluids

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            The onset of nanofluid bioconvection in a suspension containing both nanoparticles and gyrotactic microorganisms

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              Micropolar nanofluid flow with MHD and viscous dissipation effects towards a stretching sheet with multimedia feature

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                Author and article information

                Journal
                Journal of Non-Equilibrium Thermodynamics
                Walter de Gruyter GmbH
                1437-4358
                0340-0204
                January 28 2020
                January 28 2020
                : 45
                : 1
                : 81-95
                Affiliations
                [1 ]Department of Mathematics, 66715COMSATS University Islamabad, Sahiwal57000, Pakistan
                [2 ]Department of Mathematics, 72594Government College University Faisalabad, 38000Faisalabad, Pakistan
                [3 ]College of Mathematics and Systems Science, 74789Shandong University of Science and Technology, Qingdao, Shandong, 266590, China
                [4 ]Shanghai Institute of Applied Mathematics and Mechanics, 34747Shanghai University, Shanghai200072, China
                Article
                10.1515/jnet-2019-0049
                c8273659-ac3c-4f9d-b6d5-f367020f5ea0
                © 2020
                History

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