Viscous instabilities in trailing vortices at large swirl numbers

Viscous instabilities in trailing vortices at large swirl numbers
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大涡流数下尾随涡流的粘性不稳定性

DOI:
10.1017/s0022112003007353
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发表时间:
2004
影响因子:
3.7
通讯作者:
L. Jacquin
L. Jacquin
中科院分区:
工程技术2区
文献类型:
--
作者:
D. Fabre;L. Jacquin

文献摘要

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This paper deals with the temporal stability of the $q$-vortex trailing line vortex model. We describe a family of viscous instabilities existing in a range of parameters which is usually assumed to be stable, namely large swirl parameters ($q\,{>}\,1.5$) and large Reynolds numbers. These instabilities affect negative azimuthal wavenumbers ($m\,{<}\,0$) and take the form of centre-modes (i.e. with a structure concentrated along the vortex centreline). They are related to a family of viscous modes described by Stewartson, Ng & Brown (1988) in swirling Poiseuille flow, and are the temporal counterparts of weakly amplified spatial modes recently computed by Olendraru & Sellier (2002). These instabilities are studied numerically using an original and highly accurate Chebyshev collocation method, which allows a mapping of the unstable regions up to $\hbox{\it Re}\,{\approx}\,10^6$ and $q\,{\approx}\,7$. Our results indicate that in the limit of very large Reynolds numbers, trailing vortices are affected by this kind of instability whatever the value of the swirl number.