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On Vortex Tube Stretching and Instabilities in an Inviscid Fluid

We study instabilities that are present in two models that retain some of the dynamics of vortex tube stretching in the motion of a fluid in 3 dimensions. Both models are governed by a 2-dimensional PDE and are hence more tractable than the full 3-dimensional Euler equations. The first model is the...

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Autor principal: Friedlander, S
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:http://cds.cern.ch/record/455298
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author Friedlander, S
author_facet Friedlander, S
author_sort Friedlander, S
collection CERN
description We study instabilities that are present in two models that retain some of the dynamics of vortex tube stretching in the motion of a fluid in 3 dimensions. Both models are governed by a 2-dimensional PDE and are hence more tractable than the full 3-dimensional Euler equations. The first model is the so called surface quasi-geostrophic equation. The second model is a class of 3-dimensional flows that are invariant with respect to one spatial coordinate. Both models are constructed in the context of a rapidly rotating fluid. Instabilities due to an effect analogous to vortex tube stretching are detected: these instabilities are in the linearised equations in the first model and in the nonlinear equations in the second model. Such instabilities are absent, or weaker, in strictly 2-dimensional fluid motion.
id cern-455298
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
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spelling cern-4552982019-09-30T06:29:59Zhttp://cds.cern.ch/record/455298engFriedlander, SOn Vortex Tube Stretching and Instabilities in an Inviscid FluidGeneral Theoretical PhysicsWe study instabilities that are present in two models that retain some of the dynamics of vortex tube stretching in the motion of a fluid in 3 dimensions. Both models are governed by a 2-dimensional PDE and are hence more tractable than the full 3-dimensional Euler equations. The first model is the so called surface quasi-geostrophic equation. The second model is a class of 3-dimensional flows that are invariant with respect to one spatial coordinate. Both models are constructed in the context of a rapidly rotating fluid. Instabilities due to an effect analogous to vortex tube stretching are detected: these instabilities are in the linearised equations in the first model and in the nonlinear equations in the second model. Such instabilities are absent, or weaker, in strictly 2-dimensional fluid motion.EXT-2000-195IHES-P-2000-55oai:cds.cern.ch:4552982000-08-01
spellingShingle General Theoretical Physics
Friedlander, S
On Vortex Tube Stretching and Instabilities in an Inviscid Fluid
title On Vortex Tube Stretching and Instabilities in an Inviscid Fluid
title_full On Vortex Tube Stretching and Instabilities in an Inviscid Fluid
title_fullStr On Vortex Tube Stretching and Instabilities in an Inviscid Fluid
title_full_unstemmed On Vortex Tube Stretching and Instabilities in an Inviscid Fluid
title_short On Vortex Tube Stretching and Instabilities in an Inviscid Fluid
title_sort on vortex tube stretching and instabilities in an inviscid fluid
topic General Theoretical Physics
url http://cds.cern.ch/record/455298
work_keys_str_mv AT friedlanders onvortextubestretchingandinstabilitiesinaninviscidfluid