The aim of this study is to validate a fully non-linear finite-element model to simulate waves and wave-structure interactions. The Navier–Stokes equations are solved on an extended domain, which covers both fluid and structure. The latter is represented by a non-zero solid-concentration field, which is computed by conservatively mapping a mesh discretising the solid onto the extended mesh. In the regions of non-zero solid concentration, a penalty force is further added to the equations of motion in order to represent the effect of the structure on the fluid dynamics. The results are first shown for the interactions between a cylindrical pile and a regular train of small-amplitude gravity waves in a numerical wave tank. The pile is consider...
This paper presents a three-dimensional (3D) non-hydrostatic model for the prediction of the interac...
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...
The aim of this study is to validate a fully non-linear finite-element model to simulate waves and w...
structured finite-element methods, Offshore piles Abstract. The aim of this study is to validate a f...
This study aims at demonstrating the capability of the immersed-body method to simulate wave–structu...
Offshore structures are required to survive in extreme wave environments. Historically, the design o...
Offshore structures are required to survive in extreme wave environments. Historically, the design o...
AbstractThis study aims at demonstrating the capability of the immersed-body method to simulate wave...
Offshore structures are required to survive in extreme wave environments. Historically, the design o...
In this paper we validate a numerical model for water-wave-body interaction by comparing the numeric...
Abstract: Nonlinear wave-body interactions for a stationary surface-piercing body in water of finite...
The interaction of steep waves with structures is a complex problem which is still not fully underst...
This thesis concerns the development of an exact or fully nonlinear numerical model capable of descr...
The interaction between fully nonlinear water waves in a wave tank and fixed or floating structures ...
This paper presents a three-dimensional (3D) non-hydrostatic model for the prediction of the interac...
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...
The aim of this study is to validate a fully non-linear finite-element model to simulate waves and w...
structured finite-element methods, Offshore piles Abstract. The aim of this study is to validate a f...
This study aims at demonstrating the capability of the immersed-body method to simulate wave–structu...
Offshore structures are required to survive in extreme wave environments. Historically, the design o...
Offshore structures are required to survive in extreme wave environments. Historically, the design o...
AbstractThis study aims at demonstrating the capability of the immersed-body method to simulate wave...
Offshore structures are required to survive in extreme wave environments. Historically, the design o...
In this paper we validate a numerical model for water-wave-body interaction by comparing the numeric...
Abstract: Nonlinear wave-body interactions for a stationary surface-piercing body in water of finite...
The interaction of steep waves with structures is a complex problem which is still not fully underst...
This thesis concerns the development of an exact or fully nonlinear numerical model capable of descr...
The interaction between fully nonlinear water waves in a wave tank and fixed or floating structures ...
This paper presents a three-dimensional (3D) non-hydrostatic model for the prediction of the interac...
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...