When ocean's internal tidal waves “beach” at underwater topography, they transform from more or less linear into highly nonlinear waves that can break with generation of vigorous turbulent mixing. Although most mixing occurs in the half hour around a steep (bottom-)front leading the upslope moving internal tide phase, relatively large mixing also occurs some distance of several tens of meters off the bottom, just prior to the downslope moving internal tide phase and initiated by high-frequency “small-scale” internal waves. Details of this off-bottom small-scale mixing in a stratified natural environment and some of its variability per tidal period are presented here in two case studies using high-resolution temperature observations (61 sens...
The inertial subrange of turbulence in a density stratified environment is the transition from inter...
The character of turbulent overturns in a weakly stratified deep-sea is investigated in some detail ...
Internal gravity waves are a key process linking the large-scale mechanical forcing of the oceans to...
When ocean's internal tidal waves “beach” at underwater topography, they transform from more or less...
An overview is presented of high-resolution temperature observations above underwater topography in ...
Internal wave breaking upon sloping seafloors is a potential source of turbulent mixing in the deep-...
Turbulent vertical eddy diffusivity (Kz) and dissipation rate (ε) are estimated between 0.5 and 50 m...
Mixing from turbulence is key to the distribution of oxygen, salt, and heat in the ocean. Climate mo...
Underwater topography like seamounts causes the breaking of large “internal waves” with associated t...
Direct Numerical Simulation (DNS) and Large Eddy Simulation (LES) are used to investigate and quanti...
High-resolution temperature observations above underwater topography in the deep, stably stratified ...
In the ocean, sloping bottom topography is important for the generation and dissipation of internal ...
The dissipation of surface tides is thought to be one of the major contributors to small-scale turbu...
400m long array with 201 high-resolution NIOZ temperature sensors was deployed above a north-east eq...
This study of nonlinear processes and turbulence associated with internal gravity waves has three ph...
The inertial subrange of turbulence in a density stratified environment is the transition from inter...
The character of turbulent overturns in a weakly stratified deep-sea is investigated in some detail ...
Internal gravity waves are a key process linking the large-scale mechanical forcing of the oceans to...
When ocean's internal tidal waves “beach” at underwater topography, they transform from more or less...
An overview is presented of high-resolution temperature observations above underwater topography in ...
Internal wave breaking upon sloping seafloors is a potential source of turbulent mixing in the deep-...
Turbulent vertical eddy diffusivity (Kz) and dissipation rate (ε) are estimated between 0.5 and 50 m...
Mixing from turbulence is key to the distribution of oxygen, salt, and heat in the ocean. Climate mo...
Underwater topography like seamounts causes the breaking of large “internal waves” with associated t...
Direct Numerical Simulation (DNS) and Large Eddy Simulation (LES) are used to investigate and quanti...
High-resolution temperature observations above underwater topography in the deep, stably stratified ...
In the ocean, sloping bottom topography is important for the generation and dissipation of internal ...
The dissipation of surface tides is thought to be one of the major contributors to small-scale turbu...
400m long array with 201 high-resolution NIOZ temperature sensors was deployed above a north-east eq...
This study of nonlinear processes and turbulence associated with internal gravity waves has three ph...
The inertial subrange of turbulence in a density stratified environment is the transition from inter...
The character of turbulent overturns in a weakly stratified deep-sea is investigated in some detail ...
Internal gravity waves are a key process linking the large-scale mechanical forcing of the oceans to...