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Characterization of the unsteady aerodynamic response of a floating offshore wind turbine to surge motion

, , , , , , and . Wind energy science, 5 (4): 1713-1730 (2020)
DOI: 10.5194/wes-5-1713-2020

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Characterization of the unsteady aerodynamic response of a floating offshore wind turbine to surge motion, , , , , , and . Wind energy science, 5 (4): 1713-1730 (2020)CFD Prediction of Tip Vortex Aging in the Wake of a Multi-MW Wind Turbine, , , , , and . The Science of Making Torque from Wind (TORQUE 2020), 1618, 6, page 062029. Institute of Physics Publishing, (2020)Piloted Simulation of the Rotorcraft Wind Turbine Wake Interaction during Hover and Transit Flights, , , , and . Energies, 15 (5): 1790 (2022)Numerical analysis of unsteady aerodynamics of floating offshore wind turbines, , , , and . The Science of Making Torque from Wind (TORQUE 2018), 1037, page 072048. Bristol, IOP Publishing, (2018)First identification and quantification of detached-tip vortices behind a wind energy converter using fixed-wing unmanned aircraft system, , , , and . Wind Energy Science, 4 (3): 451-463 (2019)Evaluation of the Effects of Actuator Line Force Smearing on Wind Turbines Near-Wake Development, , and . Wake Conference 2021, 1934, page 012013. Institute of Physics, (2021)The near-wake development of a wind turbine operating in stalled conditions : Part 1: Assessment of numerical models, , , and . Wind energy science, 9 (4): 933-962 (2024)