Numerical Investigation of Radiation Effects on MHD Convective Heat and Mass Transfer Flow Past a Semi-Infinite Vertical Moving Porous Plate in the Presence of Chemical Reaction

V., Nagaraju and Dr. V., Srihari Babu and CH., Srilakshmi (2022) Numerical Investigation of Radiation Effects on MHD Convective Heat and Mass Transfer Flow Past a Semi-Infinite Vertical Moving Porous Plate in the Presence of Chemical Reaction. International Journal for Research in Applied Science & Engineering Technology, 10 (1). pp. 1595-1607. ISSN 2321-9653

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Abstract

The numerical solutions for heat and mass transfer by laminar flow of a Newtonian, viscous, electrically conducting and heat generation/absorbing fluid on a continuously vertical permeable surface in the presence of a radiation, a first-order homogeneous chemical reaction and the mass flux are considered. The plate is assumed to move with a constant velocity in the direction of fluid flow. A uniform magnetic field acts perpendicular to the porous surface, which absorbs the fluid with a suction velocity varying with time. The Equations of continuity, linear momentum, energy and diffusion, which govern the flow field, are solved by using a Finite Element Method. The results of the velocity, temperature, concentration, skin- friction, Nusselt number and Sherwood number has been discussed for variations in the governing parameters.

Item Type: Article
Subjects: C Mechanical Engineering > C3 Thermal Engineering
K Basic Science and Humanities > K1 Mathematics
Departments: Basic Science and Humanities
Depositing User: Dr Phani Kumar Nali
Date Deposited: 07 Mar 2024 03:32
Last Modified: 03 Apr 2024 06:43
URI: https://ir.vignanits.ac.in/id/eprint/211

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