Author:
Hou Enran,Hussain Azad,Rehman Aysha,Baleanu Dumitru,Nadeem Sohail,Matoog R. T.,Khan Ilyas,Sherif El-Sayed M.
Abstract
AbstractIn this present article the entropy generation, induced magnetic field, and mixed convection stagnant point flow of pseudoplastic nano liquid over an elastic surface is investigated. The Buongiorno model is employed in modeling. Through the use of the boundary layer idea, flow equations are transformed from compact to component form. The system of equations is solved numerically. The Induced magnetic spectrum falls near the boundary and grows further away as the reciprocal of the magnetic Prandtl number improves. The fluctuation of induced magnetic rises while expanding the values of mixed convection, thermophoresis, and magnetic parameters, whereas it declines for increment in the Brownian and stretching parameters. The velocity amplitude ascends and temperature descends for the rise in magnetic parameter. The mass transfer patterns degrade for the higher amount of buoyancy ratio while it boosts by the magnification of mixed convection and stretching parameters. Streamlines behavior is also taken into account against the different amounts of mixed convection and magnetic parameters. The pseudoplastic nanofluids are applicable in all electronic devices for increasing the heating or cooling rate in them. Further, pseudoplastic nanofluids are also applicable in reducing skin friction coefficient.
Publisher
Springer Science and Business Media LLC
Reference50 articles.
1. Kumar, B., Seth, G. S., Nandkeolyar, R. & Chamkha, A. J. Outlining the impact of induced magnetic field and thermal radiation on magneto-convection flow of dissipative fluid. Int. J. Therm. Sci. 146, 106101 (2019).
2. Gireesha, B. J., Mahanthesh, B., Shivakumara, I. S. & Eshwarappa, K. M. Melting heat transfer in boundary layer stagnation-point flow of nanofluid toward a stretching sheet with induced magnetic field. Eng. Sci. Technol. 19(1), 313–321 (2016).
3. Hayat, T., Khan, W. A., Abbas, S. Z., Nadeem, S. & Ahmad, S. Impact of induced magnetic field on second-grade nanofluid flow past a convectively heated stretching sheet. Appl. Nanosci. 10, 3001–3009 (2020).
4. Hayat, T. & Nadeem, S. Induced magnetic field stagnation point flow of nanofluid past convectively heated stretching sheet with Buoyancy effects. Chin. Phys. B 25(11), 114701 (2016).
5. Sheikholeslami, M., Vajravelu, K. & Rashidi, M. M. Forced convection heat transfer in a semi annulus under the influence of a variable magnetic field. Int. J. Heat Mass Transf. 92, 339–348 (2016).
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