The effects of boundary proximity on Kelvin–Helmholtz instability and turbulence
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Publication:6169293
DOI10.1017/jfm.2023.412OpenAlexW4382060976MaRDI QIDQ6169293
William D. Smyth, Chih-Lun Liu, Alexis K. Kaminski
Publication date: 11 July 2023
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1017/jfm.2023.412
Cites Work
- Diapycnal diffusivity, turbulent Prandtl number and mixing efficiency in Boussinesq stratified turbulence
- The ‘zoo’ of secondary instabilities precursory to stratified shear flow transition. Part 1 Shear aligned convection, pairing, and braid instabilities
- The ‘zoo’ of secondary instabilities precursory to stratified shear flow transition. Part 2 The influence of stratification
- Note on a paper of John W. Miles
- Turbulent shear layers in a uniformly stratified background: DNS at high Reynolds number
- Length scales of turbulence in stably stratified mixing layers
- Mixing and available potential energy in stratified flows
- The onset of turbulence in finite-amplitude Kelvin–Helmholtz billows
- The role of transverse secondary instabilities in the evolution of free shear layers
- Vorticity concentration and the dynamics of unstable free shear layers
- M<scp>IXING</scp> E<scp>FFICIENCY IN</scp> S<scp>TRATIFIED</scp> S<scp>HEAR</scp> F<scp>LOWS</scp>
- Secondary Kelvin–Helmholtz instability in weakly stratified shear flow
- The anatomy of the mixing transition in homogeneous and stratified free shear layers
- Stratified shear instability in a field of pre-existing turbulence
- Available potential energy and mixing in density-stratified fluids
- The butterfly effect and the transition to turbulence in a stratified shear layer
- Multi-scale dynamics of Kelvin–Helmholtz instabilities. Part 1. Secondary instabilities and the dynamics of tubes and knots
- The influence of far field stratification on shear-induced turbulent mixing
- Instability in Geophysical Flows
- Predicting vortex merging and ensuing turbulence characteristics in shear layers from initial conditions
- Evolution and mixing of asymmetric Holmboe instabilities
- Evolution of an initially turbulent stratified shear layer
- On the logarithmic region in wall turbulence
- Shear-induced mixing in geophysical flows: does the route to turbulence matter to its efficiency?
- Density Stratification, Turbulence, but How Much Mixing?
- V<scp>ERTICAL</scp> M<scp>IXING</scp>, E<scp>NERGY</scp>, <scp>AND THE</scp> G<scp>ENERAL</scp> C<scp>IRCULATION OF THE</scp> O<scp>CEANS</scp>
- The influence of stratification on secondary instability in free shear layers
- Layering, Instabilities, and Mixing in Turbulent Stratified Flows
- On the stability of heterogeneous shear flows
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