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flow velocity increases: turbulence-induced vibration, vortex-induced resonance, and fluid–elastic instability, with vibration amplitudes progressively increasing from one regime to the next
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to rotor motion can induce vibrations and instabilities. These fluid-structure interactions are critical as they may degrade performance or even cause failure. Understanding them is therefore essential
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of analogous instability mechanisms. More recently, Bucci et al. (2018) investigated subcritical transition around a cylindrical roughness element by combining experimental measurements with numerical
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) of the following areas: Dynamic analysis of offshore wind turbines under complex environmental loading. Fluid–structure interaction phenomena in offshore wind systems, including instabilities, resonance mechanisms