Abstract: Reliable predictions of the aero- and hydrodynamic loads of fixed-bottom and floating offshore wind turbines are paramount for assessing fatigue life and designing load and power control systems. However, significant uncertainty affecting aerodynamic predictions still exists. This study presents cross-comparative analyses of the predictions of aerodynamic loads and power of fixed-foundation and floating wind turbine rotors with and without yaw errors using time- and frequency-domain Navier-Stokes Computational Fluid Dynamics, and the Blade Element Momentum theory. The considered test case is the National Renewable Energy Laboratory 5 MW reference turbine, assumed to be mounted in the floating case on a semi-submersible platform an...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...
Reliable predictions of the aero- and hydrodynamic loads of fixed-bottom and floating offshore wind ...
Reliable predictions of the aero- and hydrodynamic loads of fixed-bottom and floating offshore wind ...
Reliable predictions of the aero- and hydrodynamic loads of fixed-bottom and floating offshore wind ...
Reliable predictions of the aero- and hydrodynamic loads of fixed-bottom and floating offshore wind ...
Reliable predictions of the aero-and hydrodynamic loads acting on floating offshore wind turbines ar...
Reliable predictions of the aero-and hydrodynamic loads acting on floating offshore wind turbines ar...
Reliable predictions of the aero-and hydrodynamic loads acting on floating offshore wind turbines ar...
Reliable predictions of the aero-and hydrodynamic loads acting on floating offshore wind turbines ar...
Reliable predictions of the aero-and hydrodynamic loads acting on floating offshore wind turbines ar...
Reliable predictions of the aero- and hydrodynamic loads acting on floating offshore wind turbines a...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...
Reliable predictions of the aero- and hydrodynamic loads of fixed-bottom and floating offshore wind ...
Reliable predictions of the aero- and hydrodynamic loads of fixed-bottom and floating offshore wind ...
Reliable predictions of the aero- and hydrodynamic loads of fixed-bottom and floating offshore wind ...
Reliable predictions of the aero- and hydrodynamic loads of fixed-bottom and floating offshore wind ...
Reliable predictions of the aero-and hydrodynamic loads acting on floating offshore wind turbines ar...
Reliable predictions of the aero-and hydrodynamic loads acting on floating offshore wind turbines ar...
Reliable predictions of the aero-and hydrodynamic loads acting on floating offshore wind turbines ar...
Reliable predictions of the aero-and hydrodynamic loads acting on floating offshore wind turbines ar...
Reliable predictions of the aero-and hydrodynamic loads acting on floating offshore wind turbines ar...
Reliable predictions of the aero- and hydrodynamic loads acting on floating offshore wind turbines a...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...
The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbin...