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Chemically Reactive Solute Distribution in a Steady MHD Boundary Layer Flow over a Stretching Surface
Author(s) -
Mohammad Uddin,
Krishnendu Bhattacharyya,
G. C. Layek,
Weathersby Pk
Publication year - 2011
Publication title -
journal of applied fluid mechanics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.469
H-Index - 30
eISSN - 1735-3645
pISSN - 1735-3572
DOI - 10.36884/jafm.4.04.11946
Subject(s) - magnetohydrodynamics , boundary layer , mechanics , flow (mathematics) , surface (topology) , materials science , distribution (mathematics) , layer (electronics) , physics , geometry , composite material , plasma , mathematics , mathematical analysis , quantum mechanics
The paper is concerned to find the distribution of the chemically reactant solute in the MHD flow of an electrically conducting viscous incompressible fluid over a stretching surface. The first order chemical reaction and the variable solute distribution along the surface are taken into consideration. The governing partial differential equations along with appropriate boundary conditions for flow field and reactive solute are transformed into a set of non-linear selfsimilar ordinary differential equations by using scaling group of transformations. An exact analytic solution is obtained for the velocity field. Using this velocity field, we obtain numerical solution for the reactant concentration field. It reveals from the study that the values of concentration profile enhances with the increase of the magnetic field and decreases with increase of Schmidt number as well as the reaction rate parameter. Most importantly, when the solute distribution along the surface increases then the concentration profile decreases.

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