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2012 MHD Flow of an Incompressible Viscous Fluid through Convergent or Divergent Channels in Presence of a High Magnetic Field
Reza Hosseini, Sadegh Poozesh, Saeed Dinarvand
J. Appl. Math. 2012: 1-12 (2012). DOI: 10.1155/2012/157067

Abstract

The flow of an incompressible electrically conducting viscous fluid in convergent or divergent channels under the influence of an externally applied homogeneous magnetic field is studied both analytically and numerically. Navier-Stokes equations of fluid mechanics and Maxwell’s electromagnetism equations are reduced into highly non-linear ordinary differential equation. The resulting non-linear equation has been solved analytically using a very efficient technique, namely, differential transform method (DTM). The DTM solution is compared with the results obtained by a numerical method (shooting method, coupled with fourth-order Runge-Kutta scheme). The plots have revealed the physical characteristics of flow by changing angles of the channel, Hartmann and Reynolds numbers.

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Reza Hosseini. Sadegh Poozesh. Saeed Dinarvand. "MHD Flow of an Incompressible Viscous Fluid through Convergent or Divergent Channels in Presence of a High Magnetic Field." J. Appl. Math. 2012 1 - 12, 2012. https://doi.org/10.1155/2012/157067

Information

Published: 2012
First available in Project Euclid: 14 December 2012

zbMATH: 1334.76100
MathSciNet: MR2880827
Digital Object Identifier: 10.1155/2012/157067

Rights: Copyright © 2012 Hindawi

Vol.2012 • 2012
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