Abstract Direct and large eddy simulations are performed to study the internal waves generated by the oscillation of a barotropic tide over a model ridge of triangular shape. The objective is to go beyond linear theory and assess the role of nonlinear interactions including turbulence in situations with low tidal excursion number. The criticality parameter, defined as the ratio of the topographic slope to the characteristic slope of the tidal rays, is varied from subcritical to supercritical values. The barotropic tidal forcing is also systematically increased. Numerical results of the energy conversion are compared with linear theory and, in laminar flow at low forcing, they agree well in subcritical and supercritical cases but not at crit...
A non-linear non-hydrostatic model (MIT-gcm) is used to study the generation and propagation of inte...
International audienceThe energy transfers associated with internal tide (IT) generation by a semi-d...
Internal gravity waves are a key process linking the large-scale mechanical forcing of the oceans to...
A numerical study is performed to investigate nonlinear processes during internal wave generation by...
Direct Numerical Simulation (DNS) and Large Eddy Simulation (LES) are used to investigate and quanti...
Direct and Large Eddy Simulation approaches are used to study internal tide generation and turbulenc...
Mixing from turbulence is key to the distribution of oxygen, salt, and heat in the ocean. Climate mo...
We analyse the low-mode structure of internal tides generated in laboratory experiments and numerica...
Three-dimensional direct numerical simulations are performed to examine nonlinear processes during t...
Much recent observational evidence suggests that energy from the barotropic tides can be used for mi...
We describe and interpret in situ observations of tidally driven turbulence that were obtained in th...
We analyze the low-mode structure of internal tides generated in laboratory experiments and numerica...
We examine numerically the conversion of barotropic tidal energy into internal waves by flow over an...
This study of nonlinear processes and turbulence associated with internal gravity waves has three ph...
This is the publisher’s final pdf. The published article is copyrighted by the American Meteorologic...
A non-linear non-hydrostatic model (MIT-gcm) is used to study the generation and propagation of inte...
International audienceThe energy transfers associated with internal tide (IT) generation by a semi-d...
Internal gravity waves are a key process linking the large-scale mechanical forcing of the oceans to...
A numerical study is performed to investigate nonlinear processes during internal wave generation by...
Direct Numerical Simulation (DNS) and Large Eddy Simulation (LES) are used to investigate and quanti...
Direct and Large Eddy Simulation approaches are used to study internal tide generation and turbulenc...
Mixing from turbulence is key to the distribution of oxygen, salt, and heat in the ocean. Climate mo...
We analyse the low-mode structure of internal tides generated in laboratory experiments and numerica...
Three-dimensional direct numerical simulations are performed to examine nonlinear processes during t...
Much recent observational evidence suggests that energy from the barotropic tides can be used for mi...
We describe and interpret in situ observations of tidally driven turbulence that were obtained in th...
We analyze the low-mode structure of internal tides generated in laboratory experiments and numerica...
We examine numerically the conversion of barotropic tidal energy into internal waves by flow over an...
This study of nonlinear processes and turbulence associated with internal gravity waves has three ph...
This is the publisher’s final pdf. The published article is copyrighted by the American Meteorologic...
A non-linear non-hydrostatic model (MIT-gcm) is used to study the generation and propagation of inte...
International audienceThe energy transfers associated with internal tide (IT) generation by a semi-d...
Internal gravity waves are a key process linking the large-scale mechanical forcing of the oceans to...