Applied Physics Letters · 2014 · 41 citations · 21 references
Floating Wind TurbineAeroacousticsTidal DynamicsOcean EnergyEngineeringMarine EnergyOcean EngineeringDry Natural FrequencyTidal PowerSystem ResonancesOceanographyMarine EngineeringTidal EnergyWet Natural FrequencyNatural FrequencyEarth Science
To study the wet natural frequency (in water) and dry natural frequency (in air) of a tidal current turbine, we conducted a two-year measurement campaign by deploying a full-scale prototype of the system. In this article, a theoretical model is developed and validated with the frequency measurements. It reveals the measured wet natural frequency of the system could approach half that of the dry one. The measurements also show that inflow turbulence is very important in the excitation of system resonances that can lead to system failure. We also briefly discuss how the wet frequency varies over a long period.
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Stephen Salter · Nature · 1974 · 524 citations
Prototype testing of the wave energy converter wave dragon
Jens Peter Kofoed, Peter Frigaard, Erik Friis-Madsen et al. · Renewable Energy · 2005 · 484 citations