This book describes a recent effort combining interdisciplinary expertise within the Collaborative Research Centre “Energy transfers in atmosphere and ocean” (TRR-181), which was funded by the German Research Foundation (DFG). Energy transfers between the three dynamical regimes – small-scale turbulence, internal gravity waves and geostrophically balanced motion – are fundamental to the energy cycle of both the atmosphere and the ocean. Nonetheless, they remain poorly understood and quantified, and have yet to be adequately represented in today’s climate models. Since interactions between the dynamical regimes ultimately link the smallest scales to the largest ones through a range of complex processes, understanding these interactions is es...
We conducted an analysis of the process of GW breaking from an energy perspective using the output f...
We conducted an analysis of the process of GW breaking from an energy perspective using the output f...
International audienceWind work at the air-sea interface is the transfer of kinetic energy between t...
To understand and to predict the weather and climate, numerical models are important tools and it is...
Imbalance refers to the departure from the large-scale primarily vortical flows in the atmosphere an...
Climate modelling, to a great extent, is based on simulating air-sea interactions at larger scales. ...
Climate variability is an area of great interest. The ocean and atmosphere, two major components of ...
Assessing the meridional atmosphere and ocean energy transport is one of the most classical problems...
Climate modelling, to a great extent, is based on simulating air-sea interactions at larger scales. ...
Internal gravity waves play a major role in the energetics of oceanic circulation. Powered by energy...
Great progress has been made in understanding the role of small- and mesoscale processes on the larg...
When wind blows over the ocean, short wind-waves (of wavelength smaller than 10 m) are generated, ra...
Atmospheric models are strongly dependent on the turbulent exchange of momentum, sensible heat and m...
Recent numerical simulations using global ocean circulation models are reviewed together with model ...
We conducted an analysis of the process of GW breaking from an energy perspective using the output f...
We conducted an analysis of the process of GW breaking from an energy perspective using the output f...
International audienceWind work at the air-sea interface is the transfer of kinetic energy between t...
To understand and to predict the weather and climate, numerical models are important tools and it is...
Imbalance refers to the departure from the large-scale primarily vortical flows in the atmosphere an...
Climate modelling, to a great extent, is based on simulating air-sea interactions at larger scales. ...
Climate variability is an area of great interest. The ocean and atmosphere, two major components of ...
Assessing the meridional atmosphere and ocean energy transport is one of the most classical problems...
Climate modelling, to a great extent, is based on simulating air-sea interactions at larger scales. ...
Internal gravity waves play a major role in the energetics of oceanic circulation. Powered by energy...
Great progress has been made in understanding the role of small- and mesoscale processes on the larg...
When wind blows over the ocean, short wind-waves (of wavelength smaller than 10 m) are generated, ra...
Atmospheric models are strongly dependent on the turbulent exchange of momentum, sensible heat and m...
Recent numerical simulations using global ocean circulation models are reviewed together with model ...
We conducted an analysis of the process of GW breaking from an energy perspective using the output f...
We conducted an analysis of the process of GW breaking from an energy perspective using the output f...
International audienceWind work at the air-sea interface is the transfer of kinetic energy between t...