International audienceTo model the propagation of large water waves and associated loads applied to offshore structures , scientists and engineers have a need of fast and accurate models. A wide range of models have been developped in order to predict wave-fields and hydrodynamic loads at small scale, from the linear potential boundary element method to complete CFD codes, based on the Navier-Stokes equations. Although the latters are well adapted to solve the wave-structure interaction at small scale, their use is limited due to the computational cost of such models and numerical diffusion. Alternative approaches, capturing the nonlinear effects, are thus needed. Shao and Faltinsen [5] proposed an innovative technique, called " harmonic po...
A detailed and systematic analysis is performed on the local and global properties of the recently d...
Cette thèse est consacrée à la modélisation mathématique et à la simulation numérique des vagues et ...
Submerged objects are widely occurred in ocean and coastal engineering. Their presence ...
International audienceA fully nonlinear potential Numerical Wave Tank (NWT) is developed in two dime...
We present a 2D high-order and easily accessible immersed-boundary adaptive harmonic polynomial cell...
Offshore structures located in harsh environments may experience large wave loads and wave-induced r...
International audienceTo simulate the interaction of ocean waves with marine structures, coupling ap...
A numerical wave tank based on the Harmonic Polynomial Cell (HPC) method is created to study the gen...
Offshore structures are required to survive in extreme wave environments. Historically, the design o...
Several cases of nonlinear-wave propagation are studied numerically in two dimensions within the fra...
To simulate the interaction of ocean waves with marine structures, coupling approaches between a pot...
The recently developed Harmonic Polynomial Cell (HPC) method has been proved to be a promising choic...
The purpose of this work is to develop advanced numerical tools for modeling two-way fully nonlinear...
The purpose of this work is to develop advanced numerical tools for modeling two-way fully nonlinear...
This thesis concerns the development of an exact or fully nonlinear numerical model capable of descr...
A detailed and systematic analysis is performed on the local and global properties of the recently d...
Cette thèse est consacrée à la modélisation mathématique et à la simulation numérique des vagues et ...
Submerged objects are widely occurred in ocean and coastal engineering. Their presence ...
International audienceA fully nonlinear potential Numerical Wave Tank (NWT) is developed in two dime...
We present a 2D high-order and easily accessible immersed-boundary adaptive harmonic polynomial cell...
Offshore structures located in harsh environments may experience large wave loads and wave-induced r...
International audienceTo simulate the interaction of ocean waves with marine structures, coupling ap...
A numerical wave tank based on the Harmonic Polynomial Cell (HPC) method is created to study the gen...
Offshore structures are required to survive in extreme wave environments. Historically, the design o...
Several cases of nonlinear-wave propagation are studied numerically in two dimensions within the fra...
To simulate the interaction of ocean waves with marine structures, coupling approaches between a pot...
The recently developed Harmonic Polynomial Cell (HPC) method has been proved to be a promising choic...
The purpose of this work is to develop advanced numerical tools for modeling two-way fully nonlinear...
The purpose of this work is to develop advanced numerical tools for modeling two-way fully nonlinear...
This thesis concerns the development of an exact or fully nonlinear numerical model capable of descr...
A detailed and systematic analysis is performed on the local and global properties of the recently d...
Cette thèse est consacrée à la modélisation mathématique et à la simulation numérique des vagues et ...
Submerged objects are widely occurred in ocean and coastal engineering. Their presence ...