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International Advanced Research Journal in Science, Engineering and Technology
International Advanced Research Journal in Science, Engineering and Technology A Monthly Peer-Reviewed Multidisciplinary Journal
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Hybrid technique for MHD free convection flow and heat transfer of Nano-fluid

G.BalReddy

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Abstract: A numerical model is created for the nanofluid stream and warmth move because of the imprudent movement of an endless vertical permeable plate in its own plane within the sight of an attractive field and gooey dissemination. The overseeing flimsy, coupled, nonlinear incomplete differential conditions are changed into an arrangement of nonlinear standard differential conditions, with suitable limit conditions. A powerful Galerkin limited component mathematical arrangement is created. A [1]scope of nanofluids containing nanoparticles of aluminum oxide, copper, titanium oxide and silver with nanoparticle volume division goes not exactly or equivalent to 0.04 are thought of. The Tiwari-Das nanofluid model is utilized. The [2]speed and temperature profiles just as the skin grating coefficient and Nusselt number are inspected for various boundaries, for example, nanoparticle volume part, nanofluid type, attractive boundary, warm Grashof number, Eckert number and pull boundary. The current reproductions are applicable to attractive nanomaterials warm stream preparing in the synthetic designing and metallurgy ventures. Keywords-Nanofluid , Galerkin , copper ,numerical model ,metallurgy.

How to Cite:

[1] G.BalReddy, “Hybrid technique for MHD free convection flow and heat transfer of Nano-fluid,” International Advanced Research Journal in Science, Engineering and Technology (IARJSET), DOI: 10.17148/IARJSET.2021.86124

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