Comparative study by DTM for unsteady viscous flow between the jet engines combustion unit subjected to inclined magnetic field

Author:

Anand V.W.J.,Ganesh S.,Kechil Seripah Awang

Abstract

Purpose The purpose of this study to analyze the unsteady magneto hydrodynamic incompressible viscous fluid flow along the porous parallel plates in which constant periodic suction/injection takes place at lower and upper plate, respectively. By the proper choice of stream function, they obtained exact solution analytically. Velocity components are obtained from exact solution. Design/methodology/approach Emissions of the pollutants from the aviation sectors are doubled compared to 2000. There are many recent developments that are actively developed to combat the emission by increasing the performance of the Jet engines. The role of the computational fluid dynamics and the numerical approaches are crucial in terms of research and development. Findings Velocity profiles like axial and radial have been drawn for various values of M, D, α and θ. The exact solutions have been solved by differential transformation method. The closed form analytical solutions are obtained for the stream function, axial and radial velocities and flow velocity. Originality/value The effects of Darcy parameter, magnetic parameter, Suction Reynolds number and frequency parameter on lower and upper plates are discussed through graphs.

Publisher

Emerald

Subject

Aerospace Engineering

Reference26 articles.

1. The effect of slip condition on unsteady MHD oscillatory flow of a viscous fluid in a planer channel;Romanian Journal of Physics,2007

2. Unsteady MHD dusty flow of an exponentially stretching sheet with heat source through porous medium;Applied Mathematical Sciences,2015

3. MHD flow and heat transfer between two parallel plates with temperature dependent viscosity;Mechanics Research Communications,1999

4. The effect of suction and injection on the unsteady flow between two parallel plates with variable properties;Tamkang Journal of Science and Engineering,2005

5. The unsteady flow of a dusty conducting fluid between parallel porous plates with temperature dependent viscosity;Turkish Journal of Physics,2005

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