Journal Article

·2015 OPEN ACCESS

CONTROL OF WAKE AND VORTEX SHEDDING BEHIND SOLID CIRCULAR OBSTACLE BY MAGNETOHYDRODYNAMICS

Javad Abolfazli Esfahani YTU

Journal of Thermal Engineering

Abstract

Control of vortex shedding leads to a reduction in the unsteady forces acting on the bluff bodies and can significantly reduce their vibrations. In this paper, the finite volume method (FVM) is used to simulate the flow around and through twodimensional circular obstacle. An external magnetic field is applied to control the wake behind the obstacle and also to suppress the vortex shedding phenomena. Maxwell equations are applied to provide the coupling between the flow field and the magnetic field. The range of Stuart (N) and Reynolds (Re) numbers are 0-10 and 1-200, respectively. The effects of magnetic field on control of wake structure behind the obstacle are investigated in details. It is found that for higher Stuart number (i.e. N=5), drag coefficient increases rapidly by using magnetic field.

Keywords

Vortex shedding Wake Vortex Mechanics Magnetohydrodynamics Obstacle Physics Kármán vortex street Aerospace engineering Magnetic field Reynolds number Political science Turbulence Engineering

Subject Areas

Fluid Dynamics and Vibration Analysis ·Computational Mechanics ·Physical Sciences
Aerodynamics and Fluid Dynamics Research ·Aerospace Engineering ·Physical Sciences
Wind and Air Flow Studies ·Environmental Engineering ·Physical Sciences

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