Volume 8: Ocean Renewable Energy 2022
DOI: 10.1115/omae2022-79230
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Modelling Aerodynamics of a Floating Offshore Wind Turbine Using the Overset Mesh Solver In OpenFOAM

Abstract: An accurate prediction of aerodynamic and hydrodynamic loads on an offshore floating wind turbine plays a critical role in determining its operational stability, fatigue life and survivability, as well as optimising its power control system. Therefore, it is essential to develop an integrated aerodynamics and hydrodynamics model, which is capable of capturing both loading on and dynamic response of an entire offshore wind turbine system with high accuracy and reliability. Prior to developing such an integrated… Show more

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“…Earlier studies have frequently overlooked the potential influence of wave and mooring parameters on the dynamic response and motion of the floating platform. The study of Z. Lin et al [12] focused on the dynamic response of FOWTs to accurately model the complex interaction between waves and floating structures. The researchers employed an overset mesh-based multiphase flow solver, OpenFOAM.…”
Section: Introductionmentioning
confidence: 99%
“…Earlier studies have frequently overlooked the potential influence of wave and mooring parameters on the dynamic response and motion of the floating platform. The study of Z. Lin et al [12] focused on the dynamic response of FOWTs to accurately model the complex interaction between waves and floating structures. The researchers employed an overset mesh-based multiphase flow solver, OpenFOAM.…”
Section: Introductionmentioning
confidence: 99%