Instabilities of Ideal Fluids and Related Topics: Plenary Lecture, presented at the Annual GAMM Conference, Braunschweig 1994
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Publication:4847506
DOI10.1002/zamm.19950750602zbMath0830.76037OpenAlexW2145592495MaRDI QIDQ4847506
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Publication date: 20 September 1995
Published in: ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1002/zamm.19950750602
short-wave instabilitiesvortex ringsgeometrical optics methodrelativistic adiabatic fluidsnon-steady three-dimensional flowsnonrelativistic adiabatic fluids
Related Items (7)
Stability of Hill's spherical vortex ⋮ Short-wavelength stability analysis of thin vortex rings ⋮ Strained vortices in driven cavities ⋮ Linear stability of Hill’s vortex to axisymmetric perturbations ⋮ Linear stability of inviscid vortex rings to axisymmetric perturbations ⋮ Explicit invariant manifolds and specialised trajectories in a class of unsteady flows ⋮ The mathematical theory of gravitational discontinuity hypersurfaces
Cites Work
- On the instability of certain motions of an ideal incompressible fluid
- Nonlinear stability of fluid and plasma equilibria
- Evolution of wavelike disturbances in shear flows : a class of exact solutions of the Navier-Stokes equations
- Three-dimensional centrifugal-type instabilities in inviscid two-dimensional flows
- Vortex Rings with Swirl: Axisymmetric Solutions of the Euler Equations with Nonzero Helicity
- The stability of unbounded two- and three-dimensional flows subject to body forces: some exact solutions
- Local stability conditions in fluid dynamics
- Short wavelength instabilities of rotating, compressible fluid masses
- The response of Hill's spherical vortex to a small axisymmetric disturbance
- A note on the stability of steady inviscid helical gas flows
- Localized instabilities of vortex rings with swirl
- Instability criteria for the flow of an inviscid incompressible fluid
- Instability criteria for steady flows of a perfect fluid
- Relativistic Fluids and Magneto-fluids
- On the stability of rotating compressible and inviscid fluids
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