Frequency entrainment and nonlinear synchronization are commonly observed between simple oscillatory systems, but their occurrence and behavior in continuum fluid systems are much less well understood. Motivated by possible applications to geophysical fluid systems, such as in atmospheric circulation and climate dynamics, we have carried out an experimental study of the interaction of fully developed baroclinic instability in a differentially heated, rotating fluid annulus with an externally imposed periodic modulation of the thermal boundary conditions. In quasiperiodic and chaotic amplitude-modulated traveling wave regimes, the results demonstrate a strong interaction between the natural periodic modulation of the wave amplitude and the e...
In this study an experimental investigation of baroclinic waves in air in a differentially heated ro...
International audienceCyclic forcing on many timescales is believed to have a significant effect on ...
International audienceThe route to chaos of baroclinic waves in a rotating, stratified fluid subject...
A series of laboratory experiments in a thermally driven, rotating fluid annulus are presented that ...
A series of laboratory experiments in a thermally driven, rotating fluid annulus are presented that ...
Synchronization of periodic and chaotic oscillations between two coupled rotating baroclinic fluid s...
A series of laboratory experiments is presented investigating regular and chaotic baroclinic waves i...
Synchronization phenomena in a fluid dynamical analogue of atmospheric circulation is studied experi...
Synchronization phenomena in a fluid dynamical analogue of atmospheric circulation is studied experi...
We discuss the nonlinear dynamics and routes to chaos of baroclinic waves as found in a laboratory e...
Cyclic forcing on many timescales is believed to have a significant effect on various quasi-periodic...
Synchronization is studied using a pair of diffusively-coupled, two-layer quasi-geostrophic systems ...
Synchronization is studied using a pair of diffusively-coupled, two-layer quasi-geostrophic systems ...
Three-dimensional direct numerical simulations (DNS) of the nonlinear dynamics and a route to chaos ...
In this study an experimental investigation of baroclinic waves in air in a differentially heated ro...
In this study an experimental investigation of baroclinic waves in air in a differentially heated ro...
International audienceCyclic forcing on many timescales is believed to have a significant effect on ...
International audienceThe route to chaos of baroclinic waves in a rotating, stratified fluid subject...
A series of laboratory experiments in a thermally driven, rotating fluid annulus are presented that ...
A series of laboratory experiments in a thermally driven, rotating fluid annulus are presented that ...
Synchronization of periodic and chaotic oscillations between two coupled rotating baroclinic fluid s...
A series of laboratory experiments is presented investigating regular and chaotic baroclinic waves i...
Synchronization phenomena in a fluid dynamical analogue of atmospheric circulation is studied experi...
Synchronization phenomena in a fluid dynamical analogue of atmospheric circulation is studied experi...
We discuss the nonlinear dynamics and routes to chaos of baroclinic waves as found in a laboratory e...
Cyclic forcing on many timescales is believed to have a significant effect on various quasi-periodic...
Synchronization is studied using a pair of diffusively-coupled, two-layer quasi-geostrophic systems ...
Synchronization is studied using a pair of diffusively-coupled, two-layer quasi-geostrophic systems ...
Three-dimensional direct numerical simulations (DNS) of the nonlinear dynamics and a route to chaos ...
In this study an experimental investigation of baroclinic waves in air in a differentially heated ro...
In this study an experimental investigation of baroclinic waves in air in a differentially heated ro...
International audienceCyclic forcing on many timescales is believed to have a significant effect on ...
International audienceThe route to chaos of baroclinic waves in a rotating, stratified fluid subject...