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Stability analysis of vortex-induced vibrations on wind turbines

Authors :
Riva, Riccardo
Horcas, Sergio G.
Sørensen, Niels N.
Grinderslev, Christian
Pirrung, Georg R.
Riva, Riccardo
Horcas, Sergio G.
Sørensen, Niels N.
Grinderslev, Christian
Pirrung, Georg R.
Source :
Riva , R , Horcas , S G , Sørensen , N N , Grinderslev , C & Pirrung , G R 2022 , Stability analysis of vortex-induced vibrations on wind turbines . in Floating Wind; Systems Design and Multi-Fidelity/Multi-Disciplinary Modelling; Future Wind; Smaller Wind Turbines . , 042054 , IOP Publishing , Journal of Physics: Conference Series , no. 4 , vol. 2265 .
Publication Year :
2022

Abstract

A parked wind turbine can be subjected to large yaw angles, which causes vortex shedding. Under some particular inflow conditions, the interaction between the shed vorticity and the blade structure could lead to Vortex-Induced Vibrations (VIV). VIV are an instability where the response grows until it reaches a limit cycle oscillation. In this paper, we will focus on this last part of the response. We will see that the shedding makes the aeroelastic system linear time-periodic, and study its stability with Floquet theory. We will use high-fidelity simulations of different inflow conditions, and quantify the stability of the system using a model-free approach.

Details

Database :
OAIster
Journal :
Riva , R , Horcas , S G , Sørensen , N N , Grinderslev , C & Pirrung , G R 2022 , Stability analysis of vortex-induced vibrations on wind turbines . in Floating Wind; Systems Design and Multi-Fidelity/Multi-Disciplinary Modelling; Future Wind; Smaller Wind Turbines . , 042054 , IOP Publishing , Journal of Physics: Conference Series , no. 4 , vol. 2265 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1372615446
Document Type :
Electronic Resource