Wave loading on tidal turbines is of key concern for determining blade and drive train design loads and the fatigue life of components. Furthermore, irregular waveforms are likely to add complexity to the loading patterns, and represent more realistic conditions. To investigate this issue, a set of laboratory tests was conducted in a large wave-tow facility at CNR-INSEAN, Rome. A 0.9 m diameter three bladed horizontal axis turbine model was fixed to the tow carriage and tested under tow, regular wave-tow and irregular-wave-tow conditions at a range of turbine rotational velocities. Thrust and torque on the blades and rotor were measured dynamically during testing using strain gauges. The control mode was switched between constant speed and ...
Tidal devices are likely to faced with shear flows and subjected to various wave climates. The paper...
Tidal devices are likely to faced with shear flows and subjected to various wave climates. The paper...
International audienceThis paper studies wave influence on two horizontal axis tidal turbines develo...
Wave loading on tidal turbines is of key concern for determining blade and drive train design loads ...
Wave loading on tidal turbines is of key concern for determining blade and drive train design loads ...
Wave loading on tidal turbines is of key concern for determining blade and drive train design loads ...
Tidal turbines are subject to large hydrodynamic loads from combinations of currents and waves, whic...
The flow developed on a tidal site can be characterized by combinations of turbulence, shear flows, ...
The flow developed on a tidal site can be characterized by combinations of turbulence, shear flows, ...
The flow developed on a tidal site can be characterized by combinations of turbulence, shear flows, ...
The flow developed on a tidal site can be characterized by combinations of turbulence, shear flows, ...
The flow developed on a tidal site can be characterized by combinations of turbulence, shear flows, ...
To understand the influence of complex hydrodynamic loads on tidal turbines, laboratory testing is n...
To understand the influence of complex hydrodynamic loads on tidal turbines, laboratory testing is n...
To understand the influence of complex hydrodynamic loads on tidal turbines, laboratory testing is n...
Tidal devices are likely to faced with shear flows and subjected to various wave climates. The paper...
Tidal devices are likely to faced with shear flows and subjected to various wave climates. The paper...
International audienceThis paper studies wave influence on two horizontal axis tidal turbines develo...
Wave loading on tidal turbines is of key concern for determining blade and drive train design loads ...
Wave loading on tidal turbines is of key concern for determining blade and drive train design loads ...
Wave loading on tidal turbines is of key concern for determining blade and drive train design loads ...
Tidal turbines are subject to large hydrodynamic loads from combinations of currents and waves, whic...
The flow developed on a tidal site can be characterized by combinations of turbulence, shear flows, ...
The flow developed on a tidal site can be characterized by combinations of turbulence, shear flows, ...
The flow developed on a tidal site can be characterized by combinations of turbulence, shear flows, ...
The flow developed on a tidal site can be characterized by combinations of turbulence, shear flows, ...
The flow developed on a tidal site can be characterized by combinations of turbulence, shear flows, ...
To understand the influence of complex hydrodynamic loads on tidal turbines, laboratory testing is n...
To understand the influence of complex hydrodynamic loads on tidal turbines, laboratory testing is n...
To understand the influence of complex hydrodynamic loads on tidal turbines, laboratory testing is n...
Tidal devices are likely to faced with shear flows and subjected to various wave climates. The paper...
Tidal devices are likely to faced with shear flows and subjected to various wave climates. The paper...
International audienceThis paper studies wave influence on two horizontal axis tidal turbines develo...