Energy transfer mechanisms between the atmosphere and the deep ocean have been studied for many years. Their importance to the ocean’s energy balance and possible implications on mixing are widely accepted. The slab model by Pollard (Deep-Sea Res Oceanogr Abstr 17(4):795–812, 1970) is a well-established simulation of near-inertial motion and energy inferred through wind-ocean interaction. Such a model is set up with hourly wind forcing from the NCEP-CFSR reanalysis that allows computations up to high latitudes without loss of resonance. Augmenting the one-dimensional model with the horizontal divergence of the near-inertial current field leads to direct estimates of energy transfer spectra of internal wave radiation from the mixed layer bas...
The total energy flux leaving the ocean’s spatially and seasonally varying mixed layer is estimated ...
The ocean mixed layer is an important interface for the interactions between ocean and atmosphere as...
Near-inertial energy in the ocean is thought to be redistributed by β-dispersion, whereby near-inert...
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 ...
Wind-generated inertial currents can radiate from the mixed layer as horizontally and vertically pro...
The generation of internal gravity waves in the ocean associated to wind stress forcing is studied w...
Near-inertial waves (NIWs) are a special class of internal gravity waves with periods set by planeta...
The generation of internal gravity waves in the ocean associated to wind stress forcing is studied w...
Wind-induced near-inertial energy has been believed to be an important source for generating the oce...
The generation of internal gravity waves in the ocean is largely driven by tides, winds, and interac...
Abstract. Wind energy input to oceanic near-inertial motions (estimated be-tween 0.5 TeraWatt (TW) a...
We study the generation, propagation, and dissipation of wind-generated near-inertial waves (NIWs) i...
Estimates of the kinetic energy transfer from the wind to the ocean are often limited by the spatial...
We use an eddying realistic primitive-equation model of the Southern Ocean to examine the spatial an...
The total energy flux leaving the ocean’s spatially and seasonally varying mixed layer is estimated ...
The ocean mixed layer is an important interface for the interactions between ocean and atmosphere as...
Near-inertial energy in the ocean is thought to be redistributed by β-dispersion, whereby near-inert...
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 ...
Wind-generated inertial currents can radiate from the mixed layer as horizontally and vertically pro...
The generation of internal gravity waves in the ocean associated to wind stress forcing is studied w...
Near-inertial waves (NIWs) are a special class of internal gravity waves with periods set by planeta...
The generation of internal gravity waves in the ocean associated to wind stress forcing is studied w...
Wind-induced near-inertial energy has been believed to be an important source for generating the oce...
The generation of internal gravity waves in the ocean is largely driven by tides, winds, and interac...
Abstract. Wind energy input to oceanic near-inertial motions (estimated be-tween 0.5 TeraWatt (TW) a...
We study the generation, propagation, and dissipation of wind-generated near-inertial waves (NIWs) i...
Estimates of the kinetic energy transfer from the wind to the ocean are often limited by the spatial...
We use an eddying realistic primitive-equation model of the Southern Ocean to examine the spatial an...
The total energy flux leaving the ocean’s spatially and seasonally varying mixed layer is estimated ...
The ocean mixed layer is an important interface for the interactions between ocean and atmosphere as...
Near-inertial energy in the ocean is thought to be redistributed by β-dispersion, whereby near-inert...