Using a concurrent simulation of the ocean general circulation and tides with the ° Max Planck Institute Ocean Model (MPI-OM), known as STORMTIDE, this study provides a near-global quantification of the low-mode M2 internal tides. The quantification is based on wavelengths and their near-global distributions obtained by applying spectral analysis to STORMTIDE velocities and on comparisons of the distributions with those derived by solving the Sturm–Liouville eigenvalue problem. The simulated wavelengths, with respect to both their magnitudes and their geographical distributions, compare well with those obtained by solving the eigenvalue problem, suggesting that the STORMTIDE internal waves are, to a first approximation, linear internal wave...
The worldwide distribution of the small degree-3 M1 ocean tide is investigated using a quasi-global ...
The generation of internal gravity waves in the ocean is largely driven by tides, winds, and interac...
Oceanic internal tides are internal waves with tidal periodicities. They are ubiquitous throughout t...
Using a concurrent simulation of the ocean general circulation and tides with the ° Max Planck Insti...
The present study describes a model simulation, where ocean tide dynamics are simulated simultaneous...
This thesis deals with the internal tide in the deep ocean, which is generated by the barotropic tid...
A near-global chart of surface elevations associated with the stationary M2 internal tide is empiric...
A near-global chart of surface elevations associated with the stationary M2 internal tide is empiric...
Abstract: Using hydrodynamic and thermodynamic equations appropriate for mod-elling internal tides, ...
Internal tides are a predominant source of high‐frequency variability and diapycnal mixing in the oc...
International audienceInternal tides power much of the observed small-scale turbulence in the ocean ...
Ocean tides, and the atmospherically forced oceanic general circulation and its associated mesoscale...
Internal gravity waves are complex oscillations widely found in fluids exhibiting density stratifica...
The worldwide distribution of the small degree-3 M1 ocean tide is investigated using a quasi-global ...
The generation of internal gravity waves in the ocean is largely driven by tides, winds, and interac...
Oceanic internal tides are internal waves with tidal periodicities. They are ubiquitous throughout t...
Using a concurrent simulation of the ocean general circulation and tides with the ° Max Planck Insti...
The present study describes a model simulation, where ocean tide dynamics are simulated simultaneous...
This thesis deals with the internal tide in the deep ocean, which is generated by the barotropic tid...
A near-global chart of surface elevations associated with the stationary M2 internal tide is empiric...
A near-global chart of surface elevations associated with the stationary M2 internal tide is empiric...
Abstract: Using hydrodynamic and thermodynamic equations appropriate for mod-elling internal tides, ...
Internal tides are a predominant source of high‐frequency variability and diapycnal mixing in the oc...
International audienceInternal tides power much of the observed small-scale turbulence in the ocean ...
Ocean tides, and the atmospherically forced oceanic general circulation and its associated mesoscale...
Internal gravity waves are complex oscillations widely found in fluids exhibiting density stratifica...
The worldwide distribution of the small degree-3 M1 ocean tide is investigated using a quasi-global ...
The generation of internal gravity waves in the ocean is largely driven by tides, winds, and interac...
Oceanic internal tides are internal waves with tidal periodicities. They are ubiquitous throughout t...