Skip to main navigation Skip to search Skip to main content

Spectral analysis of the transition to turbulence from a dipole in stratified fluid

  • Laboratoire d'Hydrodynamique de l'Ecole Polytechnique
  • KTH Royal Institute of Technology

Research output: Contribution to conferencePaperpeer-review

Abstract

We investigate through numerical simulations the spectral properties of the turbulence generated during the nonlinear evolution of a Lamb-Chaplygin dipole in a stratified fluid for a high Reynolds number Re = 28000 and a wide range of horizontal Froude number Fh ∈ [0.0225 0.135] and buoyancy Reynolds number R = ReFh2 ∈ [14 510]. A spectral analysis shows that this transition is dominated by two kinds of transfers: first, the shear instability induces a direct non-local transfer toward horizontal wavelengths of the order of the buoyancy scale Lb = U/N, where U is the characteristic horizontal velocity of the dipole and N the Brunt-Väisälä frequency; second, the destabilization of the Kelvin-Helmholtz billows and the gravitational instability lead to small-scale weakly stratified turbulence. We show that the anisotropic spectra at the maximum of dissipation share many characteristics with those obtained from numerical simulations of forced stratified turbulence and from measurements in the atmosphere and in the ocean. The article presenting this study [2] is the subject of a Focus on Fluids article [10].

Original languageEnglish
Publication statusPublished - 1 Jan 2020
Event14th European Turbulence Conference, ETC 2013 - Lyon, France
Duration: 1 Sept 20134 Sept 2013

Conference

Conference14th European Turbulence Conference, ETC 2013
Country/TerritoryFrance
CityLyon
Period1/09/134/09/13

Fingerprint

Dive into the research topics of 'Spectral analysis of the transition to turbulence from a dipole in stratified fluid'. Together they form a unique fingerprint.

Cite this