Transition to turbulence through steep global-modes cascade in an open rotating cavity
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Publication:2893773
DOI10.1017/jfm.2011.393zbMath1241.76252OpenAlexW2110769729MaRDI QIDQ2893773
Bertrand Viaud, Chomaz, Jean-Marc, Éric Serre
Publication date: 26 June 2012
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://hal-polytechnique.archives-ouvertes.fr/hal-00998000/file/TS0022112011003934a.pdf
General theory of rotating fluids (76U05) Rotation in hydrodynamic stability (76E07) Transition to turbulence (76F06)
Related Items (9)
On the impulse response and global instability development of the infinite rotating-disc boundary layer ⋮ The effect of downstream turbulent region on the spiral vortex structures of a rotating-disk flow ⋮ Global linear stability of the boundary-layer flow over a rotating sphere ⋮ Transition to turbulence in the rotating disk boundary layer of a rotor–stator cavity ⋮ A 3D pseudospectral method for cylindrical coordinates. Application to the simulations of rotating cavity flows ⋮ An experimental study of edge effects on rotating-disk transition ⋮ Novel Outflow Boundary Conditions for Spectral Direct Numerical Simulation of Rotating Flows ⋮ On the global nonlinear instability of the rotating-disk flow over a finite domain ⋮ Transition to turbulence in the rotating-disk boundary-layer flow with stationary vortices
Cites Work
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- The elephant mode between two rotating disks
- Stability of parallel wake flows in quasigeostrophic and frontal regimes
- Absolute instability of the Ekman layer and related rotating flows
- Global behaviour corresponding to the absolute instability of the rotating-disc boundary layer
- Finite-amplitude crossflow vortices, secondary instability and transition in the rotating-disk boundary layer
- Absolute and convective instabilities in nonlinear systems
- Absolute instability of the boundary layer on a rotating disk
- On source-sink flows in a rotating fluid
- Steep nonlinear global modes in spatially developing media
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