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Heat transfer enhancement using rectangular vortex promoters in confined quasi-two-dimensional magnetohydrodynamic flows Cassells, O.G.W

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CFD Letters • Volume , Issue , Pages - November

Document type Article

Source type Journal ISSN

DOI

. /cfdl. . . View more

Study on Magnetohydrodynamic Flow Past Two Circular Cylinders in Staggered Arrangement

Baharin N.M.K.a, Sapardi M.A.M.a , Razak N.N.A.a, Hamid A.H.A.b, Bakar S.N.S.A.a

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(2021) CFD Letters

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(2016) International Journal of Heat and Mass Transfer

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Study on Flow Structure Behind Multiple Circular Cylinders in a Tandem Arrangement Under the Effect of Magnetic Field

Baharin, N.M.K. Sapardi, M.A.M. Hamid, A.H.A.

Heat transfer enhancement using rectangular vortex promoters in confined quasi-two-dimensional magnetohydrodynamic flows Cassells, O.G.W. Hussam, W.K.

Sheard, G.J.

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Department of Mechanical Engineering, Kulliyyah of Engineering, International Islamic University Malaysia, Jalan Gombak, Selangor, 53100, Malaysia

Fakulti Kejuruteraan Mekanikal, Universiti Teknologi Mara Malaysia, Selangor, Shah Alam, 40450, Malaysia

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Abstract

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Abstract

The fusion reactor is anticipated to be a new source of clean energy. Magnetohydrodynamic flow in the fusion blanket is expected to cause the flow to be highly stable, causing the heat transfer to be poor. Passive vortex promoter such as bluff body is one of the methods found to be has a great potential in optimizing the heat transfer. In this study , two circular cylinders in a staggered

arrangement are introduced to promote vortices to enhance heat convection from a heated wall using an electrically conducting fluid under a constant magnetic field. The effect of the Hartmann friction parameter and the height differential onto the Nusselt number were examined. Modified Navier—

Stokes equations known as SM82 were used using OpenFOAM to simulate the confined, quasi-two- dimensional, incompressible and laminar MHD flow past the bluff bodies. It was found that the heat transfer is better when the height differential is small. © 2021, Penerbit Akademia Baru. All rights reserved.

Author keywords

Hartmann number; Heat Transfer; Magnetohydrodynamic Flow ; Nusselt number; OpenFOAM;

Reynolds number

,

(2016) Journal of Applied Fluid Mechanics

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Sapardi, M.A.M.; Department of Mechanical Engineering, Kulliyyah of Engineering, International Islamic University Malaysia, Jalan Gombak, Selangor, Malaysia;

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© Copyright 2022 Elsevier B.V., All rights reserved.

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