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April 27, 2026Advances in wind engineering.Open Access

Aeroelastic instability of Ultra-Long Flexible Blades in Floating Offshore Wind Turbines: A State-of-the-Art Review

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Authors

XLXintao LiNorth China Electric Power UniversityYCYezan CuiNorth China Electric Power UniversityLSLihe ShiNorth China Electric Power University

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Overview

Systematic review examines aeroelastic challenges of flexible blades in floating offshore wind turbines, suggesting stability solutions.

Key Points

  • This paper reviews the challenges of aeroelastic instability in ultra-long flexible blades of floating offshore wind turbines.
  • Summarizes aeroelastic analysis methods and instability mechanisms for floating turbine blades.
  • Analyzes the dynamic response and unsteady flow features due to the motion of floating platforms.
  • Compares modeling approaches such as BEM theory, FVM, and CFD for their advantages and limitations.
  • Identifies classical flutter, stall flutter, VIV, and turbulent buffeting as key aeroelastic phenomena.
  • Provides strategies for mitigating aeroelastic instability through structural and flow control.
  • Recommends future research directions in simulation methods and intelligent vibration suppression technologies.

Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69eefcaefede9185760d39b4https://doi.org/10.1016/j.awe.2026.100123
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