The present work aims at comparing the dynamic response of a fixed–bottom offshore wind turbine subjected to the combined wind–waves action employing different nonlinear irregular wave kinematic models. To this purpose, linear, second–order and fully nonlinear models are implemented in the hydrodynamic module of a global hydro-aero-elastic solver. All the wave models are based on the potential flow assumption. The fully nonlinear wave kinematics is reproduced both on the full simulation time and, in order to save com- putational time, only on some space-time subdomains within a domain decomposition strategy. This approach permits achieving a much higher accuracy in the assessment of the hydrodynamic loads keeping the global computational ef...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
Structural ringing can be caused by non-linear hydrodynamic loads in steep waves, by wave slamming, ...
The present work aims at comparing the dynamic response of a fixed–bottom offshore wind turbine subj...
The present work aims at comparing the dynamic response of a fixed–bottom offshore wind turbine subj...
The present work aims at comparing the dynamic response of a fixed–bottom offshore wind turbine subj...
The present work aims at comparing the dynamic response of a fixed–bottom offshore wind turbine subj...
The present work aims at comparing the dynamic response of a fixed–bottom offshore wind turbine subj...
The present work aims at comparing the dynamic response of a fixed–bottom offshore wind turbine subj...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
Structural ringing can be caused by non-linear hydrodynamic loads in steep waves, by wave slamming, ...
The present work aims at comparing the dynamic response of a fixed–bottom offshore wind turbine subj...
The present work aims at comparing the dynamic response of a fixed–bottom offshore wind turbine subj...
The present work aims at comparing the dynamic response of a fixed–bottom offshore wind turbine subj...
The present work aims at comparing the dynamic response of a fixed–bottom offshore wind turbine subj...
The present work aims at comparing the dynamic response of a fixed–bottom offshore wind turbine subj...
The present work aims at comparing the dynamic response of a fixed–bottom offshore wind turbine subj...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
The present work investigates the dynamic response of a fixed–bottom offshore wind turbine subjected...
Structural ringing can be caused by non-linear hydrodynamic loads in steep waves, by wave slamming, ...