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TitleA free wake vortex model for floating wind turbine aerodynamics
Identifier
Identifierurn:NBN:nl:ui:24-uuid:48b0221c-534f-4bdd-8b0f-b529375ec94a
Identifier48b0221c-534f-4bdd-8b0f-b529375ec94a
Identifier10.4233/uuid:48b0221c-534f-4bdd-8b0f-b529375ec94a
Identifierurn:isbn:978-94-6384-250-1
Identifierurn:NBN:nl:ui:24-uuid:48b0221c-534f-4bdd-8b0f-b529375ec94a
Identifier
AbstractIn order to significantly increase the share of wind energy produced worldwide, wind energy technology is moving from onshore to offshore and from shallow water to deep water. Floating offshore wind turbines (FOWTs) are expected to be economically better than bottom-mounted turbines when placed in water deeper than 60 metres. Despite key initiatives such as the installation of the world’s first floating wind farm off the coast of Scotland in 2017, many design and operational challenges need to be solved to make floating offshore wind turbines economically attractive.
Date2021-09-13
Typeinfo:eu-repo/semantics/doctoralthesis
Languageen
Relation
Formatapplication/pdf
AuthorDong, J.
ContributorsWatson, S.J.; Viré, A.C.; Delft University of Technology
Subject(s)wind energy; floating offshore wind turbine; vortex ring method; vortex ring state; BEM
Rightsinfo:eu-repo/semantics/openAccess