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The centrifugal instability of a slender rotating cone.

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posted on 2012-08-13, 12:53 authored by Zahir Hussain, S.O. Stephen, Stephen J. Garrett
In this study, we provide a mathematical description of the onset of counter-rotating circular vortices observed for a family of slender rotating cones (of half-angles 15° or less) in quiescent fluid. In particular, we apply appropriate scalings in order to simplify the basic-flow profiles, which are subsequently perturbed, accounting for the effects of streamline curvature. A combined large Reynolds number and large vortex wavenumber analysis is used to obtain an estimate for the asymptotic right-hand branch of neutral stability for a slender rotating cone. Our results confirm our earlier predictions pertaining to the existence of the new Görtler mode and capture the effects of the governing centrifugal instability mechanism. Meanwhile, favourable comparisons are drawn with existing numerical neutral stability curve results.

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Citation

Journal of Algorithms and Computational Technology, 2012, 6 (1), pp. 113-128

Author affiliation

/Organisation/COLLEGE OF SCIENCE AND ENGINEERING/Department of Mathematics

Version

  • AM (Accepted Manuscript)

Published in

Journal of Algorithms and Computational Technology

Publisher

Multi-Science Publishing

issn

1748-3018

Copyright date

2012

Available date

2012-08-13

Publisher version

http://multi-science.metapress.com/content/bj84157u73388145/

Language

en

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