Wind-generated inertial currents can radiate from the mixed layer as horizontally and vertically propagating new-inertial internal gravity waves. To study the timescale of the decay of mixed layer energy and the magnitude of the energy transfer to the ocean below, the authors developed a numerical, linear model on a β plane, using baroclinic modes to describe the velocity field. The model is unforced-wave propagation is initiated by specifying the mixed layer currents that would he generated by a moving atmospheric front. The numerical results are interpreted using concepts of modal interference and modal departure that can be evaluated analytically, thereby permitting predictions Of some features of wave field evolution without the need to...
The generation of internal gravity waves in the ocean associated to wind stress forcing is studied w...
International audienceWe analyse the 3-D propagation of wind-forced near-inertial motions in a fully...
We study the generation, propagation, and dissipation of wind-generated near-inertial waves (NIWs) i...
Observations of near-inertial oscillations collected during the Ocean Storms Experiment in the north...
Energy transfer mechanisms between the atmosphere and the deep ocean have been studied for many year...
Surface windstress transfers energy to the surface mixed layer of the ocean, and this energy partly ...
Near-inertial waves (NIWs) are a special class of internal gravity waves with periods set by planeta...
Winds generate inertial and near-inertial currents in the upper ocean. These currents dominate the k...
An idealized model of the transmission of near-inertial waves from the mixed layer into the deeper o...
This paper presents a simplified model of the process through which a geostrophic flow enhances the ...
A strong, isolated October storm generated 0.35–0.7 m s⁻¹ inertial frequency currents in the 40-m de...
Energy transfer mechanisms between the atmosphere and the deep ocean have been studied for many year...
The generation of internal gravity waves in the ocean is largely driven by tides, winds, and interac...
A theoretical investigation into the subharmonic parametric instability of internal gravity waves to...
The interaction between inertial oscillations generated by a storm and a mesoscale eddy field is stu...
The generation of internal gravity waves in the ocean associated to wind stress forcing is studied w...
International audienceWe analyse the 3-D propagation of wind-forced near-inertial motions in a fully...
We study the generation, propagation, and dissipation of wind-generated near-inertial waves (NIWs) i...
Observations of near-inertial oscillations collected during the Ocean Storms Experiment in the north...
Energy transfer mechanisms between the atmosphere and the deep ocean have been studied for many year...
Surface windstress transfers energy to the surface mixed layer of the ocean, and this energy partly ...
Near-inertial waves (NIWs) are a special class of internal gravity waves with periods set by planeta...
Winds generate inertial and near-inertial currents in the upper ocean. These currents dominate the k...
An idealized model of the transmission of near-inertial waves from the mixed layer into the deeper o...
This paper presents a simplified model of the process through which a geostrophic flow enhances the ...
A strong, isolated October storm generated 0.35–0.7 m s⁻¹ inertial frequency currents in the 40-m de...
Energy transfer mechanisms between the atmosphere and the deep ocean have been studied for many year...
The generation of internal gravity waves in the ocean is largely driven by tides, winds, and interac...
A theoretical investigation into the subharmonic parametric instability of internal gravity waves to...
The interaction between inertial oscillations generated by a storm and a mesoscale eddy field is stu...
The generation of internal gravity waves in the ocean associated to wind stress forcing is studied w...
International audienceWe analyse the 3-D propagation of wind-forced near-inertial motions in a fully...
We study the generation, propagation, and dissipation of wind-generated near-inertial waves (NIWs) i...