Inertia-gravity waves exist ubiquitously throughout the stratified parts of the atmosphere and ocean. They are generated by local velocity shears, interactions with topography, and as geostrophic (or spontaneous) adjustment radiation. Relatively little is known about the details of their interaction with the large-scale flow, however. We report on a joint model/laboratory study of a flow in which inertia-gravity waves are generated as spontaneous adjustment radiation by an evolving large-scale mode. We show that their subsequent impact upon the large-scale dynamics is generally small. However, near a potential transition from one large-scale mode to another, in a flow which is simultaneously baroclinically-unstable to more than one mode, th...
We report on the results of a laboratory investigation using a rotating two-layer annulus experiment...
This paper describes laboratory observations of inertia–gravity waves emitted from balanced fluid fl...
Although atmospheric and oceanic ows at large scales are, to a very good approximation, predominant...
Inertia-gravity waves exist ubiquitously throughout the stratified parts of the atmosphere and ocean...
Inertia-gravity waves exist ubiquitously throughout the stratified parts of the atmosphere and ocean...
A novel technique is used to visualise and measure a baroclinically unstable flow in a two-layer, ro...
International audienceThe spontaneous generation of inertia-gravity waves (IGWs) by surface-intensif...
International audienceThe spontaneous generation of inertia-gravity waves (IGWs) by surface-intensif...
International audienceWe report on a numerical study of the impact of short, fast inertia-gravity wa...
International audienceThe spontaneous generation of inertia-gravity waves (IGWs) by surface-intensif...
International audienceThe spontaneous generation of inertia-gravity waves (IGWs) by surface-intensif...
International audienceThe spontaneous generation of inertia-gravity waves (IGWs) by surface-intensif...
International audienceThe spontaneous generation of inertia-gravity waves (IGWs) by surface-intensif...
We report on the results of a laboratory investigation using a rotating two-layer annulus experiment...
This paper describes laboratory observations of internal inertio-gravity waves (also referred to as ...
We report on the results of a laboratory investigation using a rotating two-layer annulus experiment...
This paper describes laboratory observations of inertia–gravity waves emitted from balanced fluid fl...
Although atmospheric and oceanic ows at large scales are, to a very good approximation, predominant...
Inertia-gravity waves exist ubiquitously throughout the stratified parts of the atmosphere and ocean...
Inertia-gravity waves exist ubiquitously throughout the stratified parts of the atmosphere and ocean...
A novel technique is used to visualise and measure a baroclinically unstable flow in a two-layer, ro...
International audienceThe spontaneous generation of inertia-gravity waves (IGWs) by surface-intensif...
International audienceThe spontaneous generation of inertia-gravity waves (IGWs) by surface-intensif...
International audienceWe report on a numerical study of the impact of short, fast inertia-gravity wa...
International audienceThe spontaneous generation of inertia-gravity waves (IGWs) by surface-intensif...
International audienceThe spontaneous generation of inertia-gravity waves (IGWs) by surface-intensif...
International audienceThe spontaneous generation of inertia-gravity waves (IGWs) by surface-intensif...
International audienceThe spontaneous generation of inertia-gravity waves (IGWs) by surface-intensif...
We report on the results of a laboratory investigation using a rotating two-layer annulus experiment...
This paper describes laboratory observations of internal inertio-gravity waves (also referred to as ...
We report on the results of a laboratory investigation using a rotating two-layer annulus experiment...
This paper describes laboratory observations of inertia–gravity waves emitted from balanced fluid fl...
Although atmospheric and oceanic ows at large scales are, to a very good approximation, predominant...