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In general, the results suggest that the lumped-mass mooring model is suitable for predicting mooring line loads of the DeepCwind semisubmersible.
The mooring model incorporates axial elasticity, hydrodynamic loading via Morison׳s equation, and bottom contact.
Next, the procedure developed for coupling the floater dynamics model with the mooring model is described.
In all cases, using a quasi-static mooring model significantly underpredicts the mooring loads, especially for fatigue.
The mooring model is then coupled with a spar-type FOWT model which simulates the structural dynamics of turbine blades and tower; aerodynamics of the wind-blade interaction and wave-current actions on the spar.
The work comes to the conclusion that the coupling of a dynamic mooring model along with a second-order wave radiation-diffraction solver can offer realistic predictions of the floating wind turbine performance.
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The Fountain of the Moor model was offered at Sotheby's in London in July 2002, and was bought by the Salander-O'Reilly Galleries in Manhattan for $3.2 million.
This paper introduces a lumped-mass mooring line model and validates it against scale-model floating offshore wind turbine test data.
To include such interactions, a nonlinear mooring hydrodynamics model is presented which is able to consider the cable geometric nonlinearity, seabed contact, and the current effect.
This paper reports on results of an experimental investigation into the interaction between unidirectional waves and a horizontally moored semisubmersible model.
Therefore, when designing truncated mooring system for model testing, mooring damping equivalence should be considered.
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