The modelling of baroclinic tides generated in the northern South China Sea is studied using a fully-nonlinear non-hydrostatic numerical model. The focus of the modelling efforts was on the vertical structure of internal waves in the vicinity of the Luzon Strait. The barotropic tidal flow interacting with a two-ridge bottom topography in the area of the Luzon Strait produces a complex baroclinic tidal signal. A multimodal baroclinic bore with counter-phase displacement of isopycnals generated over the ridges and propagating westward disintegrates into a series of large-amplitude solitary internal waves. The leading first-mode solitary wave of depression is followed by a second mode solitary wave coupled with a packet of short-scale internal...
The long-term goal of this project is to predict the generation of internal waves over the ridges in...
The goal of this project is to understand processes relevant to the generation, propagation and diss...
In this paper we aim to clarify the generation of Internal Solitary Waves (ISWs) at work to the east...
The modelling of baroclinic tides generated in the northern South China Sea is studied using a fully...
Baroclinic tides result from the interaction of barotropic tides with topography in stratified ocean...
Internal solitary waves (ISWs) in the northern South China Sea (SCS) are investigated using historic...
A fully nonlinear, non-hydrostatic model, MITgcm, is used to investigate internal solitary waves (IS...
The nonhydrostatic Regional Ocean Modeling System is applied to the nonlinear internal waves, or sol...
Time series observations of nonlinear internal waves in the deep basin of the South China Sea are us...
The three-dimensional (3D) double-ridge internal tide interference in the Luzon Strait in the South ...
Two research cruises were conducted from the R/V OCEAN RESEARCHER 3 during 05–16 August 2011 to stud...
Tidal currents in Luzon Strait south of Taiwan generate some of the largest internal waves anywhere ...
[1] The complex double-ridge system in the Luzon Strait in the South China Sea (SCS) is one of the s...
The complex double-ridge system in the Luzon Strait in the South China Sea (SCS) is one of the stron...
[1] The internal wave field in the real-time numerical simulation at the Naval Research Laboratory i...
The long-term goal of this project is to predict the generation of internal waves over the ridges in...
The goal of this project is to understand processes relevant to the generation, propagation and diss...
In this paper we aim to clarify the generation of Internal Solitary Waves (ISWs) at work to the east...
The modelling of baroclinic tides generated in the northern South China Sea is studied using a fully...
Baroclinic tides result from the interaction of barotropic tides with topography in stratified ocean...
Internal solitary waves (ISWs) in the northern South China Sea (SCS) are investigated using historic...
A fully nonlinear, non-hydrostatic model, MITgcm, is used to investigate internal solitary waves (IS...
The nonhydrostatic Regional Ocean Modeling System is applied to the nonlinear internal waves, or sol...
Time series observations of nonlinear internal waves in the deep basin of the South China Sea are us...
The three-dimensional (3D) double-ridge internal tide interference in the Luzon Strait in the South ...
Two research cruises were conducted from the R/V OCEAN RESEARCHER 3 during 05–16 August 2011 to stud...
Tidal currents in Luzon Strait south of Taiwan generate some of the largest internal waves anywhere ...
[1] The complex double-ridge system in the Luzon Strait in the South China Sea (SCS) is one of the s...
The complex double-ridge system in the Luzon Strait in the South China Sea (SCS) is one of the stron...
[1] The internal wave field in the real-time numerical simulation at the Naval Research Laboratory i...
The long-term goal of this project is to predict the generation of internal waves over the ridges in...
The goal of this project is to understand processes relevant to the generation, propagation and diss...
In this paper we aim to clarify the generation of Internal Solitary Waves (ISWs) at work to the east...