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Development and application of an aero-hydro-servo-elastic coupling framework for analysis of floating offshore wind turbines
In order to enhance simulation capabilities of existing numerical tools for the design of
floating offshore wind turbines (FOWTs), this study has developed and implemented a …
floating offshore wind turbines (FOWTs), this study has developed and implemented a …
Dynamic response analysis of monopile CFDST wind turbine tower system under wind-wave-seismic coupling action
The dynamic response of monopile-supported offshore wind turbine tower (OWT) structures
under seismic action in undrained conditions is analyzed using ABAQUS. A typical example …
under seismic action in undrained conditions is analyzed using ABAQUS. A typical example …
Coupled analysis of a 10 MW multi-body floating offshore wind turbine subjected to tendon failures
In this study dynamic responses of a 10 MW offshore wind turbine supported by a multi-body
floating platform that consists of a wide cylindrical platform and a cylindrical ballast body …
floating platform that consists of a wide cylindrical platform and a cylindrical ballast body …
Performance evaluation of an integrated floating energy system based on coupled analysis
An integrated floating energy system consisting of different types of energy devices is an
ideal option for reducing the levelized cost of energy by enhancing the power production …
ideal option for reducing the levelized cost of energy by enhancing the power production …
Performance and fatigue analysis of an integrated floating wind-current energy system considering the aero-hydro-servo-elastic coupling effects
Integration of multiple offshore renewable energy converters holds immense promise for
achieving cost-effective utilization of marine energy. Integrated Floating Wind-Current …
achieving cost-effective utilization of marine energy. Integrated Floating Wind-Current …
An innovative aerodynamic design methodology of wind turbine blade models for wind tunnel real-time hybrid tests based on genetic algorithm
Y Ma, C Chen, T Fan, H Lu, J Fang - Ocean Engineering, 2022 - Elsevier
The physical model tests of floating offshore wind turbines (FOWTs) in wave basins cannot
simulate the aerodynamic loads accurately. The real-time hybrid model test in wind tunnel …
simulate the aerodynamic loads accurately. The real-time hybrid model test in wind tunnel …
A reinforcement learning based blade twist angle distribution searching method for optimizing wind turbine energy power
The twist angle distribution (TAD) of a wind turbine blade determines its efficiency in terms of
electricity production. As the blade is normally deployed in dynamic wind environments …
electricity production. As the blade is normally deployed in dynamic wind environments …
Application of the blade element momentum theory to design horizontal axis wind turbine blades
V Dehouck, M Lateb, J Sacheau… - Journal of Solar …, 2018 - asmedigitalcollection.asme.org
Small horizontal axis wind turbines (HAWTs) are increasingly used as source of energy
production. Based on this observation, the blade element momentum theory (BEMT) is …
production. Based on this observation, the blade element momentum theory (BEMT) is …
Optimal Design and Aerodynamic Performance Prediction of a Horizontal Axis Small‐Scale Wind Turbine
R Yin, JB ** ability of a platform is the most fundamental guarantee to securing the
dynamic stability of a Floating offshore wind turbine (FOWT) when being subjected to …
dynamic stability of a Floating offshore wind turbine (FOWT) when being subjected to …