Results 11 to 20 of about 417 (167)
The implementation and integration of new methods and control techniques to floating offshore wind turbines (FOWTs) have the potential to significantly improve its structural response.
Fares M’zoughi +4 more
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With the recent trend toward larger floating offshore wind turbines (FOWT), the influence of blade deformation becomes more obvious. Modelling this fully coupled fluid-structure interaction (FSI) system, especially at extreme sea level with large-scale ...
Ziying Yu, Xing Zheng, Yuming Yuan
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Due to the existence of rotor and tower, the floating offshore wind turbine (FOWT) is subjected to greater wind heeling moment than the conventional floating platform, which would cause significant pitch motion and bring great challenge to the structural
Yuan Ma +3 more
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This paper intends to introduce the applicability of HydroQus to a problem of a tanker collision against a semi-submersible type floating offshore wind turbine (FOWT).
Dong Ho Yoon, Joonmo Choung
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FOWT MOORING LINES FRETTING FATIGUE
This presentation was part of the EERA JP Wind WORKSHOP on Ongoing research in offshore wind structures (September 16 & 17, 2021, hybrid event in Amsterdam and online).
M. MARTINEZ +6 more
openaire +1 more source
Tension leg platform (TLP) is a cost-effective and high-performance support structure for floating offshore wind turbine (FOWT) because of its small responses in heave, pitch, and roll with the constraint of the tendons.
Yiming Zhou, Yajun Ren, Wei Shi, Xin Li
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A passively self‐adjusting floating wind farm layout to increase the annual energy production
Wake losses inside a wind farm occur due to the aerodynamic interactions when a downwind turbine is in the wake of upwind turbines. The ability of floating offshore wind turbines (FOWTs) to relocate their positions in the horizontal plane introduces an ...
Mohammad Youssef Mahfouz, Po‐Wen Cheng
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Wake Interactions of Two Tandem Semisubmersible Floating Offshore Wind Turbines Based on FAST.Farm
Wake effects commonly exist in offshore wind farms, which will cause a 10–20% reduction of whole power production as well as a 5–15% increase of fatigue loading on the wind turbine main structures.
Lei Xue +5 more
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Analysis of Dynamic Characteristics of an Ultra-Large Semi-Submersible Floating Wind Turbine
An initial design of the platform for the moderate water depth (100 m) is performed by upscaling of an existing 5 MW braceless semi-submersible platform design to support the DTU (Danish University of Science and Technology) 10 MW wind turbine.
Zhixin Zhao +3 more
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Development of an aero-elastic-servo-hydro-mooring coupling framework for FOWT system
A hybrid simulation approach for the integrated time domain simulation of floating offshore wind turbine (FOWT) is developed based on the open-source codes OpenFOAM and OpenFAST.
Yangyang Gao, Yanning Chen, Lizhong Wang
doaj +1 more source

