Mass Transfer Effect On Unsteady Mixed convective Flow and Heat Transfer Along An Infinite Vertical Plate Bounded With Porous Medium

Author:
P.R. Sharma1 and Rachna Katta2
Affiliation:

1Department of Mathematics University of Rajasthan Jaipur India

2Department of Mathematics Rajasthan Institute of Engineering & Technology Bhankrota Jaipur India

Keyword:
Unsteady, forced/free convection, porous medium, periodic suction, heat source, skin friction, Nusselt number, Sherwood number.
Issue Date:
April 2013
Abstract:

Aim of the paper is to investigate the effect of mass transfer on unsteady mixed convective flow of a viscous incompressible fluid with foreign mass, past an infinite vertical porous plate bounded with porous medium in the presence of periodic suction, constant heat source, free stream and oscillatory wall temperature.The transverse suction at the plate oscillates with time about a constant mean. The governing equations of continuity ,motion, energy and mass diffusion are solved using successive perturbation and variable separation techniques .The velocity ,temperature and mass distributions are derived, discussed numerically and shown through graphs. The skin-fiction coefficient, Nusselt number and Sherwood number at the plate are derived, discussed numerically and shown through graphs.

 

 

Pages:
75-90
ISSN:
2319-8044 (Online) - 2231-346X (Print)
Source:
DOI:
jusps-A
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Copy the following to cite this article:

P.R. Sharma1 and Rachna Katta2 , "Mass Transfer Effect On Unsteady Mixed convective Flow and Heat Transfer Along An Infinite Vertical Plate Bounded With Porous Medium ", Journal of Ultra Scientist of Physical Sciences, Volume 23, Issue 1, Page Number 75-90, 2016

Copy the following to cite this URL:

P.R. Sharma1 and Rachna Katta2 , "Mass Transfer Effect On Unsteady Mixed convective Flow and Heat Transfer Along An Infinite Vertical Plate Bounded With Porous Medium ", Journal of Ultra Scientist of Physical Sciences, Volume 23, Issue 1, Page Number 75-90, 2016

Available from: https://www.ultrascientist.org/paper/685/

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