The ocean is a turbulent fluid with processes acting on a variety of spatio-temporal scales. The estimates of energy fluxes between length scales allows us to understand how the mean flow is maintained as well as how mesoscale eddies are formed and dissipated. Here, we quantify the kinetic energy budget in a suite of realistic global ocean models, with varying horizontal resolution and horizontal viscosity. We show that eddy-permitting ocean models have weaker kinetic energy cascades than eddy-resolving models due to discrepancies in the effect of wind forcing, horizontal viscosity, potential to kinetic energy conversion, and nonlinear interactions on the kinetic energy (KE) budget. However, the change in eddy kinetic energy between the edd...
Analysis of spectral kinetic energy fluxes in satellite altimetry data has demonstrated that an inve...
The energy pathways in geostrophic turbulence are explored using a two-layer, flat-bottom, f-plane, ...
International audienceThe increase of model resolution naturally leads to the representation of a wi...
The ocean is a turbulent fluid with processes acting on a variety of spatio-temporal scales. The est...
The ocean is a turbulent fluid with processes acting on a variety of spatio-temporal scales. The est...
The general circulation of the ocean is forced by surface fluxes of momentum, heat, and freshwater a...
Quasigeostrophic turbulence theory and numerical simulation are used to study the mechanisms determi...
Ocean mesoscale eddies are characterized by rotating-like and meandering currents that imprint the l...
Ocean mesoscale eddies are characterized by rotating-like and meandering currents that imprint the l...
Eddies ; Nonlinear dynamics ; Ocean dynamics ; Satellite observations ; Ocean modelsInternational au...
We present the first estimate for the ocean's global scale-transfer of kinetic energy (KE), across s...
Here, we present an estimate for the ocean's global scale transfer of kinetic energy (KE), across sc...
Analysis of spectral kinetic energy fluxes in satellite altimetry data has demonstrated that an inve...
The energy pathways in geostrophic turbulence are explored using a two-layer, flat-bottom, f-plane, ...
International audienceThe increase of model resolution naturally leads to the representation of a wi...
The ocean is a turbulent fluid with processes acting on a variety of spatio-temporal scales. The est...
The ocean is a turbulent fluid with processes acting on a variety of spatio-temporal scales. The est...
The general circulation of the ocean is forced by surface fluxes of momentum, heat, and freshwater a...
Quasigeostrophic turbulence theory and numerical simulation are used to study the mechanisms determi...
Ocean mesoscale eddies are characterized by rotating-like and meandering currents that imprint the l...
Ocean mesoscale eddies are characterized by rotating-like and meandering currents that imprint the l...
Eddies ; Nonlinear dynamics ; Ocean dynamics ; Satellite observations ; Ocean modelsInternational au...
We present the first estimate for the ocean's global scale-transfer of kinetic energy (KE), across s...
Here, we present an estimate for the ocean's global scale transfer of kinetic energy (KE), across sc...
Analysis of spectral kinetic energy fluxes in satellite altimetry data has demonstrated that an inve...
The energy pathways in geostrophic turbulence are explored using a two-layer, flat-bottom, f-plane, ...
International audienceThe increase of model resolution naturally leads to the representation of a wi...