As offshore wind turbines move towards deeper and more distant sites, the concept of floating foundations is a potential technically and economically attractive alternative to the traditional fixed foundations. Unlike the well-studied monopile, the geometry of a floating foundation is complex and, thereby, increases the difficulty in wave force determination due to limitations of the commonly used simplified methods. This paper deals with a physical model test of the hydrodynamic excitation force in surge on a fixed three-columned structure intended as a floating foundation for offshore wind turbines. The experiments were conducted in a wave basin at Aalborg University. The test results are compared with a Boundary Element Method code base...
Structural ringing can be caused by non-linear hydrodynamic loads in steep waves, by wave slamming, ...
In a severe sea state, nonlinear wave loads can excite resonant responses of floating wind turbines ...
As offshore wind projects move to deeper waters, floating platforms become the most feasible solutio...
As offshore wind turbines move towards deeper and more distant sites, the concept of floating founda...
SYNOPSIS Gravity base foundations for wind turbines in deeper water at exposed sites will experience...
Generally the foundations of offshore wind turbines are steel truss structures which are exposed to ...
Generally the foundations of offshore wind turbines are steel truss structures which are exposed to ...
Generally the foundations of offshore wind turbines are steel truss structures which are exposed to ...
This thesis is a study of the slamming forces from plunging breaking waves on truss support structur...
In this study, a 3D numerical model was used to predict nonlinear wave forces on a cylindrical pile ...
This thesis is a study of the slamming forces from plunging breaking waves on truss support structur...
The wind energy resource is one feasible supplement for renewable energy developments. The abundant ...
To predict wave excitation forces on a fixed Tension Leg Platform Wind Turbine (TLPWT), two numerica...
To predict wave excitation forces on a fixed Tension Leg Platform Wind Turbine (TLPWT), two numerica...
To predict wave excitation forces on a fixed Tension Leg Platform Wind Turbine (TLPWT), two numerica...
Structural ringing can be caused by non-linear hydrodynamic loads in steep waves, by wave slamming, ...
In a severe sea state, nonlinear wave loads can excite resonant responses of floating wind turbines ...
As offshore wind projects move to deeper waters, floating platforms become the most feasible solutio...
As offshore wind turbines move towards deeper and more distant sites, the concept of floating founda...
SYNOPSIS Gravity base foundations for wind turbines in deeper water at exposed sites will experience...
Generally the foundations of offshore wind turbines are steel truss structures which are exposed to ...
Generally the foundations of offshore wind turbines are steel truss structures which are exposed to ...
Generally the foundations of offshore wind turbines are steel truss structures which are exposed to ...
This thesis is a study of the slamming forces from plunging breaking waves on truss support structur...
In this study, a 3D numerical model was used to predict nonlinear wave forces on a cylindrical pile ...
This thesis is a study of the slamming forces from plunging breaking waves on truss support structur...
The wind energy resource is one feasible supplement for renewable energy developments. The abundant ...
To predict wave excitation forces on a fixed Tension Leg Platform Wind Turbine (TLPWT), two numerica...
To predict wave excitation forces on a fixed Tension Leg Platform Wind Turbine (TLPWT), two numerica...
To predict wave excitation forces on a fixed Tension Leg Platform Wind Turbine (TLPWT), two numerica...
Structural ringing can be caused by non-linear hydrodynamic loads in steep waves, by wave slamming, ...
In a severe sea state, nonlinear wave loads can excite resonant responses of floating wind turbines ...
As offshore wind projects move to deeper waters, floating platforms become the most feasible solutio...