Impact of Activation Energy and Hall Current on MHD Nano-Fluid Flow with Inclined Plates

Sivaiah, Sreeramula and Kalyan Kumar, Palaparthi and Ramesh Babu, Juturi and R., Panduranga Rao and Saroja, Sandiri (2023) Impact of Activation Energy and Hall Current on MHD Nano-Fluid Flow with Inclined Plates. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 107 (1). pp. 219-236. ISSN 2289-7879

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Abstract

This research article deals with the impact of Activation energy and Hall current on an electrically conducting nanofluid flow past a continuously stretching surface with heat generation/absorption has been explored. Transverse magnetic field with the assumption of small Reynolds number is implemented vertically. Appropriate similarity transformations are utilized to transform the governing partial differential equations into the non-linear ordinary differential equations. Numerical solutions for the dimensionless velocity, temperature and nanoparticle concentration are computed with the help of the shooting method. The impact of each of the Activation energy, Hall current parameter, Brownian motion parameter, Prandtl number, thermophoresis parameter and magnetic parameter on velocity, concentration and temperature, is discussed through graphs. The skin friction coefficient along the x−and z−directions, the local Nusselt number and the Sherwood number are calculated numerically to look into the inside behavior of the emerging parameters.

Item Type: Article
Subjects: K Basic Science and Humanities > K1 Mathematics
Departments: Basic Science and Humanities
Depositing User: Dr Phani Kumar Nali
Date Deposited: 04 Mar 2024 10:02
Last Modified: 26 Mar 2024 09:31
URI: https://ir.vignanits.ac.in/id/eprint/137

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