MHD fractionalized Jeffrey fluid over an accelerated slipping porous plate

Author:

Jamil Muhammad1,Haleem Abdul1

Affiliation:

1. Department of Mathematics, NED University of Engineering & Technology, Karachi-75270, Pakistan

Abstract

AbstractThe primary target of this paper is to obtain the analytic solutions for the incompressible unsteady flow of fractionalized MHD Jeffrey fluid over an accelerating porous plate with linear slip effect is assumed between fluid and the plate. The governing equations of Jeffrey fluid are developed by fractional calculus approach. The velocity distribution and its corresponding shear stress both are obtained in terms of generalized M-function by using Laplace transform technique and considering all initial and boundary conditions. We have also discussed that obtained results of fractionalized MHD Jeffrey fluid for different cases for instance, with and without slip effects, with and without MHD and porosity effects. The influence of the different parameters affected on the flow characteristic is deliberated with the help of graphs. Finally, the analysis among different fluid models exhibits by graphical illustrations.

Publisher

Walter de Gruyter GmbH

Subject

Computer Networks and Communications,General Engineering,Modelling and Simulation,General Chemical Engineering

Reference64 articles.

1. Heat transfer in a non-Newtonian Jeffrey’s fluid over a non-isothermal wedge;Proc. Eng.,2015

2. Effects of second-order slip on the flow of a fractional Maxwell MHD fluid;J. Assoc. Arab Univ. Basic Appl. Sci.,2017

3. Influence of Hall current on the flows of a generalized Oldroyd-B fluid in a porous space;Act. Mechan.,2006

4. Fractional magnetohydrodynamics Oldroyd-B fluid over an oscillating plate;Therm. Sci.,2013

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