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The Axisymmetric Prandtl-Batchelor Eddy Behind a Circular Disc in a Uniform Stream

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dc.contributor.advisor
dc.contributor.author Harper, J F
dc.date.accessioned 2008-08-28T23:49:43Z
dc.date.accessioned 2022-07-07T02:16:00Z
dc.date.available 2008-08-28T23:49:43Z
dc.date.available 2022-07-07T02:16:00Z
dc.date.copyright 1998
dc.date.issued 1998
dc.identifier.uri https://ir.wgtn.ac.nz/handle/123456789/19196
dc.description.abstract Analytical support is given to Fornberg's numerical evidence that the steady axially symmetric flow of a uniform stream past a bluff body has a wake eddy which tends towards a large Hill's spherical vortex as the Reynolds number tends to infinity. The viscous boundary layer around the eddy resembles that around a liquid drop rising in a liquid, especially if the body is a circular disc, so that the boundary layer on it does not separate. This makes it possible to show that if the first-order perturbation of the eddy shape from a sphere is small then the eddy diameter is of order R1/5 times the disc diameter, where R is the Reynolds number based on the disc diameter. Previous authors had suggested R1/3 and ln R, but they appear to have made unjustified assumptions. en_NZ
dc.format pdf en_NZ
dc.language.iso en_NZ
dc.publisher Te Herenga Waka—Victoria University of Wellington en_NZ
dc.relation Published Version en_NZ
dc.relation.ispartofseries Journal of Fluid Mechanics en_NZ
dc.relation.ispartofseries 377 en_NZ
dc.subject Circular discs en_NZ
dc.subject Fornberg en_NZ
dc.subject Hill's spherical vortex en_NZ
dc.subject Reynolds number en_NZ
dc.title The Axisymmetric Prandtl-Batchelor Eddy Behind a Circular Disc in a Uniform Stream en_NZ
dc.type Text en_NZ
vuwschema.contributor.unit School of Mathematics, Statistics and Computer Science en_NZ
vuwschema.subject.marsden 240502 Fluid Physics en_NZ
vuwschema.type.vuw Journal Contribution - Research Article en_NZ
vuwschema.subject.anzsrcforV2 401207 Fundamental and theoretical fluid dynamics en_NZ
dc.rights.rightsholder Cambridge University Press en_NZ


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