Fully nonlinear dynamics of parallel wakes - École polytechnique Access content directly
Journal Articles Journal of Fluid Mechanics Year : 2003

Fully nonlinear dynamics of parallel wakes

Abstract

The fully nonlinear theory of global modes in open flows, proposed in recent analyses of amplitude equations, is extended to the case of Navier-Stokes equations using direct numerical simulations. The basic flow under consideration is a parallel wake in a finite domain generated by imposing the wake profile at the inlet boundary and by adding a body force to compensate the basic flow diffusion. The link between the global bifurcation, the absolute or convective nature of the local linear instability, and the theory of speed selection for the front separating an unperturbed domain of the flow from a fully saturated solution is elucidated. In particular, thanks to the parallelism of the flow, the bifurcation scenario and the associated scaling laws for the frequency, the healing length, and the slope at the origin predicted by a previous analysis of amplitude equations are recovered with great precision.
Fichier principal
Vignette du fichier
S0022112003006335a.pdf (265.86 Ko) Télécharger le fichier
Origin : Publisher files allowed on an open archive
Loading...

Dates and versions

hal-01024934 , version 1 (27-08-2014)

Identifiers

Cite

Jean-Marc Chomaz. Fully nonlinear dynamics of parallel wakes. Journal of Fluid Mechanics, 2003, november (495), pp.57-75. ⟨10.1017/s0022112003006335⟩. ⟨hal-01024934⟩
105 View
203 Download

Altmetric

Share

Gmail Facebook Twitter LinkedIn More