The frequency lock-in during the nonlinear vibration of a turbomachinery blade is modeled using a spring-mounted airfoil coupled with a van der Pol Oscillator (VDP) oscillator. The proposed reduced-order model uses the nonlinear VDP oscillator to represent the oscillatory nature of wake dynamics caused by the vortex shedding. The damping term in the VDP oscillator is assumed to be nonlinear. The coupled equations governing the pitch and plunge motion of an airfoil are used to approximate the vibration of a turbomachinery blade. Springs having cubic-order nonlinearity for their stiffnesses are used to mount the airfoil. The unsteady lift acting on the blade is modeled using a self-excited nonlinear wake oscillator. The model for wake dynamic...
In this paper the aeroelastic stability of a wind turbine rotor in the dynamic stall regime is inves...
The unsteady flow around a pitching two-dimensional airfoil section (NREL S809) has been simulated u...
The unsteady flow around a pitching two-dimensional airfoil section (NREL S809) has been simulated u...
The present study aims to investigate the lock-in phenomena due to the coupling of the pitch and the...
The vortex-induced vibration (VIV) of a rotating blade is studied in this paper. Uniform Euler–Berno...
<p>This research presents the detailed investigation of coupled-mode flutter and non-synchronous vib...
<p>One of the grand challenges faced by industry is the accurate prediction of unsteady aerodynamics...
To guarantee a safe operation of turbomachinery components engineers need to consider the aeroe- la...
In this paper, a new wake oscillator model with nonlinear coupling is proposed for the modelling of ...
International audienceThe mechanism underlying the lock-in of frequencies in flow-induced vibrations...
This work was supported by the GA CR project No. 20-26779S Study of dynamic stall flutter instabili...
The dynamics of elastic systems coupled with rotating bladed-rotors is rich and complex, and the bla...
A feature of a modern aeronautical Low-Pressure Turbine (LPT) is the high blade loadings with comple...
Key words: dynamic stall, aeroelastic stability, nonlinear behavior Abstract. In this paper the aero...
This research presents a detailed study of non-synchronous vibration (NSV) and the development of an...
In this paper the aeroelastic stability of a wind turbine rotor in the dynamic stall regime is inves...
The unsteady flow around a pitching two-dimensional airfoil section (NREL S809) has been simulated u...
The unsteady flow around a pitching two-dimensional airfoil section (NREL S809) has been simulated u...
The present study aims to investigate the lock-in phenomena due to the coupling of the pitch and the...
The vortex-induced vibration (VIV) of a rotating blade is studied in this paper. Uniform Euler–Berno...
<p>This research presents the detailed investigation of coupled-mode flutter and non-synchronous vib...
<p>One of the grand challenges faced by industry is the accurate prediction of unsteady aerodynamics...
To guarantee a safe operation of turbomachinery components engineers need to consider the aeroe- la...
In this paper, a new wake oscillator model with nonlinear coupling is proposed for the modelling of ...
International audienceThe mechanism underlying the lock-in of frequencies in flow-induced vibrations...
This work was supported by the GA CR project No. 20-26779S Study of dynamic stall flutter instabili...
The dynamics of elastic systems coupled with rotating bladed-rotors is rich and complex, and the bla...
A feature of a modern aeronautical Low-Pressure Turbine (LPT) is the high blade loadings with comple...
Key words: dynamic stall, aeroelastic stability, nonlinear behavior Abstract. In this paper the aero...
This research presents a detailed study of non-synchronous vibration (NSV) and the development of an...
In this paper the aeroelastic stability of a wind turbine rotor in the dynamic stall regime is inves...
The unsteady flow around a pitching two-dimensional airfoil section (NREL S809) has been simulated u...
The unsteady flow around a pitching two-dimensional airfoil section (NREL S809) has been simulated u...