To date, analytical models of internal tide generation by two-dimensional ridges have considered only idealized shapes. Here, we advance the Green function approach to address the generation of internal tides by two-dimensional topography of arbitrary shape, employing the Wentzel-Kramers-Brillouin (WKB) approximation to consider the impact of non-uniform stratifications. This allows for a more accurate analytical estimation of tidal conversion rates. Studies of single and double ridges reveal that the conversion rate and the nature of the radiated internal tide can be sensitive to the topographic shape, particularly around criticality and when there is interference between wave fields generated by neighbouring ridges. The method is then app...
Mixing in the abyssal ocean is known to play an important role in controlling the large-scale ocean ...
International audienceThe Green's function approach of internal tidal generation replaces forcing at...
The mixing induced by breaking internal gravity waves is an important contributor to the ocean’s ene...
Experimental results of internal tide generation by two-dimensional topography are presented. The sy...
An established analytical technique for modeling internal tide generation by barotropic flow over bo...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy at the M...
Surface tides are the periodic motions of our world's ocean due to the gravitational attraction of t...
We analyse the low-mode structure of internal tides generated in laboratory experiments and numerica...
A study is presented of the generation of internal tides by barotropic tidal flow over topography in...
Graduation date: 2011Tide-topography coupling is important for understanding surface-tide energy los...
We analyze the low-mode structure of internal tides generated in laboratory experiments and numerica...
Internal-tide generation has been quantified using both pressure work and energy conversion. When ca...
Abstract-This paper discusses linear generation models for intemal tides over large topographic feat...
The long-term goal of this project is to develop a reliable predictive capability for the generation...
International audienceInternal tide driven mixing plays a key role in sustaining the deep ocean stra...
Mixing in the abyssal ocean is known to play an important role in controlling the large-scale ocean ...
International audienceThe Green's function approach of internal tidal generation replaces forcing at...
The mixing induced by breaking internal gravity waves is an important contributor to the ocean’s ene...
Experimental results of internal tide generation by two-dimensional topography are presented. The sy...
An established analytical technique for modeling internal tide generation by barotropic flow over bo...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy at the M...
Surface tides are the periodic motions of our world's ocean due to the gravitational attraction of t...
We analyse the low-mode structure of internal tides generated in laboratory experiments and numerica...
A study is presented of the generation of internal tides by barotropic tidal flow over topography in...
Graduation date: 2011Tide-topography coupling is important for understanding surface-tide energy los...
We analyze the low-mode structure of internal tides generated in laboratory experiments and numerica...
Internal-tide generation has been quantified using both pressure work and energy conversion. When ca...
Abstract-This paper discusses linear generation models for intemal tides over large topographic feat...
The long-term goal of this project is to develop a reliable predictive capability for the generation...
International audienceInternal tide driven mixing plays a key role in sustaining the deep ocean stra...
Mixing in the abyssal ocean is known to play an important role in controlling the large-scale ocean ...
International audienceThe Green's function approach of internal tidal generation replaces forcing at...
The mixing induced by breaking internal gravity waves is an important contributor to the ocean’s ene...