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Effect of Electric Field on Dispersion of a Solute in an MHD Flow through a Vertical Channel With and Without Chemical Reaction

Authors :
J.C. Umavathi
J.P. Kumar
R.S.R. Gorla
B.J. Gireesha
Source :
International Journal of Applied Mechanics and Engineering, Vol 21, Iss 3, Pp 683-711 (2016)
Publication Year :
2016
Publisher :
University of Zielona Góra, 2016.

Abstract

The longitudinal dispersion of a solute between two parallel plates filled with two immiscible electrically conducting fluids is analyzed using Taylor’s model. The fluids in both the regions are incompressible and the transport properties are assumed to be constant. The channel walls are assumed to be electrically insulating. Separate solutions are matched at the interface using suitable matching conditions. The flow is accompanied by an irreversible first-order chemical reaction. The effects of the viscosity ratio, pressure gradient and Hartman number on the effective Taylor dispersion coefficient and volumetric flow rate for an open and short circuit are drawn in the absence and in the presence of chemical reactions. As the Hartman number increases the effective Taylor diffusion coefficient decreases for both open and short circuits. When the magnetic field remains constant, the numerical results show that for homogeneous and heterogeneous reactions, the effective Taylor diffusion coefficient decreases with an increase in the reaction rate constant for both open and short circuits.

Details

Language :
English
ISSN :
17344492 and 23539003
Volume :
21
Issue :
3
Database :
Directory of Open Access Journals
Journal :
International Journal of Applied Mechanics and Engineering
Publication Type :
Academic Journal
Accession number :
edsdoj.b31ab9ee677c4cc981bc0a6fd0e1e6c4
Document Type :
article
Full Text :
https://doi.org/10.1515/ijame-2016-0041