The mixing induced by breaking internal gravity waves is an important contributor to the ocean’s energy budget, shaping, inter alia, nutrient supply, water mass transformation and the large-scale overturning circulation. Much of the energy input into the internal wave field is supplied by the conversion of barotropic tides at rough bottom topography, which hence needs to be described realistically in internal gravity wave models and mixing parametrisations based thereon. A new semi-analytical method to describe this internal wave forcing, calculating not only the total conversion but also the direction of this energy flux, is presented. It is based on linear theory for variable stratification and finite depth, that is, it computes the energ...
Much recent observational evidence suggests that energy from the barotropic tides can be used for mi...
Internal gravity waves are a key process linking the large-scale mechanical forcing of the oceans to...
Diapycnal mixing plays a key role in maintaining the ocean stratification and the meridional overtur...
Mixing in the abyssal ocean is known to play an important role in controlling the large-scale ocean ...
Mixing in the abyssal ocean is known to play an important role in controlling the large-scale ocean ...
The generation of internal gravity waves in the ocean is largely driven by tides, winds, and interac...
This thesis deals with the internal tide in the deep ocean, which is generated by the barotropic tid...
Mixing is an essential process in the deep ocean, as it accounts for the raising of the cold abyssal...
Internal gravity waves are complex oscillations widely found in fluids exhibiting density stratifica...
International audienceThe energy transfers associated with internal tide (IT) generation by a semi-d...
Mixing is an essential process in the deep ocean, as it accounts for the raising of the cold abyssal...
Abstract-This paper discusses linear generation models for intemal tides over large topographic feat...
Surface tides are the periodic motions of our world's ocean due to the gravitational attraction of t...
Internal tides power much of the observed ...
Mixing is an essential process in the deep ocean, as it accounts for the raising of the cold abyssal...
Much recent observational evidence suggests that energy from the barotropic tides can be used for mi...
Internal gravity waves are a key process linking the large-scale mechanical forcing of the oceans to...
Diapycnal mixing plays a key role in maintaining the ocean stratification and the meridional overtur...
Mixing in the abyssal ocean is known to play an important role in controlling the large-scale ocean ...
Mixing in the abyssal ocean is known to play an important role in controlling the large-scale ocean ...
The generation of internal gravity waves in the ocean is largely driven by tides, winds, and interac...
This thesis deals with the internal tide in the deep ocean, which is generated by the barotropic tid...
Mixing is an essential process in the deep ocean, as it accounts for the raising of the cold abyssal...
Internal gravity waves are complex oscillations widely found in fluids exhibiting density stratifica...
International audienceThe energy transfers associated with internal tide (IT) generation by a semi-d...
Mixing is an essential process in the deep ocean, as it accounts for the raising of the cold abyssal...
Abstract-This paper discusses linear generation models for intemal tides over large topographic feat...
Surface tides are the periodic motions of our world's ocean due to the gravitational attraction of t...
Internal tides power much of the observed ...
Mixing is an essential process in the deep ocean, as it accounts for the raising of the cold abyssal...
Much recent observational evidence suggests that energy from the barotropic tides can be used for mi...
Internal gravity waves are a key process linking the large-scale mechanical forcing of the oceans to...
Diapycnal mixing plays a key role in maintaining the ocean stratification and the meridional overtur...