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A numerical study of vortex shedding around a heated/cooled circular cylinder by the three-step Taylor-Galerkin method

✍ Scribed by Katsumori Hatanaka; Mutsuto Kawahara


Publisher
John Wiley and Sons
Year
1995
Tongue
English
Weight
521 KB
Volume
21
Category
Article
ISSN
0271-2091

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✦ Synopsis


Abstract

In this paper the vortex shedding around a heated/cooled circular cylinder is numerically simulated by solving the time‐dependent Navier‐Stokes and energy equations. A finite element method that is referred to as the three‐step Taylor‐Galerkin method is used to compute these equations. The attention of this study is directed to the investigation of the effect of buoyancy on the vortex street behind the cylinder at constant Reynolds number. The present paper shows the suppression or generation of the von Kármán vortex street behind the cylinder when the cylinder surface is heated or cooled respectively. The relationship between the temperature‐induced buoyancy force and the vortex shedding is also discussed through several numerical examples.