2019
DOI: 10.1007/s40430-019-1820-x
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Impact of magnetic field on flow past cylindrical shell using cell model

Abstract: The present paper concerns about finding the impact of applied transverse magnetic field on parallel cylindrical shell of magneto viscous fluid by unit cell model. The considered flow is divided into three regions, bounded fluid region, porous region and inner cavity region, where the flow in the bounded and cavity regions is governed by Stokes equation and flow in the annular porous region is governed by Brinkman's equation in the presence of magnetic field. The boundary conditions used at the fluid-porous in… Show more

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Cited by 11 publications
(2 citation statements)
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“…Substituting the analytical expressions of fluid velocities from equations (18) and (20) in the equation (30), we are capable to determine the mathematical expression for volumetric flow rate of Newtonian-micropolar fluid flow. Therefore, analytical expression of the volumetric flow rate comes out as: conductivity ratio parameter (Λ 2 = 0.25).…”
Section: Evaluation Of Flow Ratementioning
confidence: 99%
“…Substituting the analytical expressions of fluid velocities from equations (18) and (20) in the equation (30), we are capable to determine the mathematical expression for volumetric flow rate of Newtonian-micropolar fluid flow. Therefore, analytical expression of the volumetric flow rate comes out as: conductivity ratio parameter (Λ 2 = 0.25).…”
Section: Evaluation Of Flow Ratementioning
confidence: 99%
“…Tiwari and Deo [17] studied pulsatile flow of Newtonian fluid in a cylindrical pipe. Madasu and Bucha [18] observed the effects of magnetic field on fluid flow through a porous cylindrical shell. In cylindrical polar coordinates, generalized version of the stream function solution of Brinkman equation is obtained [19].…”
Section: Introductionmentioning
confidence: 99%