This study presents an experimental investigation of the flow around a three-dimensional flexible hydrofoil at Reynolds numbers between 3.6×105 and 7.2×105 and angles of attack from -8∘ to 8∘. Time-resolved particle image velocimetry, force-balance measurements, deflection, and hydrophone data are used to analyze the hydrodynamic forces and wake dynamics in both the time and frequency domains. The results are compared with those of a rigid reference hydrofoil. Under specific flow conditions, a strong coupling is observed between the fluid motion, hydrodynamic loading, and the hydrofoil’s natural vibration modes. This lock-in behavior shows a pronounced dependence on the angle of attack, resulting in a significant redistribution of turbulent kinetic energy in the wake and enhanced coherence in the trailing-edge vorticity.
Fluid–body interactions on a flexible three-dimensional composite hydrofoil
Capone, AlessandroMembro del Collaboration Group
;Magionesi, FrancescaMembro del Collaboration Group
;Muscari, RobertoMembro del Collaboration Group
;Di Felice, FabioMembro del Collaboration Group
;Alves Pereira, Francisco
Project Administration
2026
Abstract
This study presents an experimental investigation of the flow around a three-dimensional flexible hydrofoil at Reynolds numbers between 3.6×105 and 7.2×105 and angles of attack from -8∘ to 8∘. Time-resolved particle image velocimetry, force-balance measurements, deflection, and hydrophone data are used to analyze the hydrodynamic forces and wake dynamics in both the time and frequency domains. The results are compared with those of a rigid reference hydrofoil. Under specific flow conditions, a strong coupling is observed between the fluid motion, hydrodynamic loading, and the hydrofoil’s natural vibration modes. This lock-in behavior shows a pronounced dependence on the angle of attack, resulting in a significant redistribution of turbulent kinetic energy in the wake and enhanced coherence in the trailing-edge vorticity.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


