The interaction influences of a two dimensional incident wave and current on the hydrodynamic responses of a floating or fixed body in the presence of a flat or sloping seabed are examined. A solution of this wave-current-seabed scenario is determined by considering steady, diffraction, and reflection potential problems individually and through their combinations. All these components are formulated using a boundary element model involving a continuous Rankine source method subject to appropriate boundary conditions. The validity of the mathematical model and accompanying numerical scheme of study are assessed by comparisons with available published data. Numerical results show that either an incoming waves, current or seabed plays a signif...
Methods to incorporate the effect of ambient currents in the prediction of nearshore wave transforma...
An integrated numerical model is developed to study wave and current-induced seabed response and liq...
This paper presents a new methodology to reproduce the interaction between waves and floating object...
Two dimensional wave-current-structure interaction problems are investigated in a sea environment wi...
A Rankine source method is developed adopting continuous free surface and seabed source panel distri...
Two-dimensional water wave problems are investigated in an environment with a flat or sloping rigid ...
Abstract: Nonlinear wave-body interactions for a stationary surface-piercing body in water of finite...
A coupled floating body-mooring line model is developed by combining a boundary element model for a ...
This paper presents the recent development of a second generation of numerical methods for the model...
A Rankine source method is developed adopting continuous free surface and seabed source panel distri...
Fully nonlinear wave-body interactions for a surface-piercing structure with combined wave-current f...
In this paper, a boundary element programme MHydro, which is based on 3-D Rankine source method, was...
Offshore structures are required to survive in extreme wave environments. Historically, the design o...
We present a novel numerical model for simulating current and wave interaction with a floater–net sy...
Typescript (photocopy).The influence of wave-current interactions on the fluid loading of large offs...
Methods to incorporate the effect of ambient currents in the prediction of nearshore wave transforma...
An integrated numerical model is developed to study wave and current-induced seabed response and liq...
This paper presents a new methodology to reproduce the interaction between waves and floating object...
Two dimensional wave-current-structure interaction problems are investigated in a sea environment wi...
A Rankine source method is developed adopting continuous free surface and seabed source panel distri...
Two-dimensional water wave problems are investigated in an environment with a flat or sloping rigid ...
Abstract: Nonlinear wave-body interactions for a stationary surface-piercing body in water of finite...
A coupled floating body-mooring line model is developed by combining a boundary element model for a ...
This paper presents the recent development of a second generation of numerical methods for the model...
A Rankine source method is developed adopting continuous free surface and seabed source panel distri...
Fully nonlinear wave-body interactions for a surface-piercing structure with combined wave-current f...
In this paper, a boundary element programme MHydro, which is based on 3-D Rankine source method, was...
Offshore structures are required to survive in extreme wave environments. Historically, the design o...
We present a novel numerical model for simulating current and wave interaction with a floater–net sy...
Typescript (photocopy).The influence of wave-current interactions on the fluid loading of large offs...
Methods to incorporate the effect of ambient currents in the prediction of nearshore wave transforma...
An integrated numerical model is developed to study wave and current-induced seabed response and liq...
This paper presents a new methodology to reproduce the interaction between waves and floating object...