Nonlinear Vibration Analysis of the Wind Turbine Blade (Occurrence of the Superharmonic Resonance in the Out of Plane Vibration of the Elastic Blade)

Author:

Inoue Tsuyoshi1,Ishida Yukio1,Kiyohara Takashi2

Affiliation:

1. Department of Mechanical Science and Engineering, School of Engineering, Nagoya University, Nagoya, 464-8603, Japan

2. Makita Corporation, 3-11-8, Sumiyoshi-cho, Anjo, Aichi, 446-8502, Japan

Abstract

The use of wind turbine generator has rapidly spread as a one of the foremost clean energy sources. Recently, as the size of the wind turbine generator has become larger, its maintenance has become more difficult. However, there are few studies on the vibration analysis and its suppression in the conventional researches. The wind turbine is a special type of rotating machinery which has a long heavy blade rotating in the vertical plane under the action of the gravitational force. The wind power acting on the wind turbine blade varies periodically because of the height-dependent characteristic of the wind. Therefore, the dynamical design and analysis of the wind turbine blade requires a more thorough study. This paper investigates the fundamental vibration characteristic of an elastic blade of the wind turbine. The nonlinear vibration analysis of the superharmonic resonance is performed, and its characteristics are explained. Furthermore, the effect of the interaction of both the gravitational force and the wind force on the superharmonic resonance is clarified.

Publisher

ASME International

Subject

General Engineering

Reference15 articles.

1. Effect of Blade Oscillation on Flow Field around HAWT Rotor Blade;Kobayashi

2. Fluid-Oscillation Coupled Analysis for HAWT Rotor Blade (One Degree of Freedom Weak Coupling Analysis with Hinge-spring Model);Imamura;Turbomach.

3. Non-Linear Dynamic Response of a Wind Turbine Blade;Chopra;J. Sound Vib.

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