Damage identification of wind turbine blades based on dynamic characteristics

Author:

Su Tian1,Su Wei2,Du Chenyu1,Huang Zhanfang1,Dong Jianping3,Hu Chao3

Affiliation:

1. Department of Architectural Engineering, School of Civil and Architectural Engineering, Shandong University of Technology , Zibo , Shangdong, 255000 , China

2. Department of Urban and Rural Planning, School of Architecture and Design, Hebei Polytechnic Institute , Shijiazhuang , Hebei, 050011 , China

3. China Railway Tenth Bureau Group Qingdao Engineering Co., Ltd , Qingdao , Shangdong, 266500 , China

Abstract

Abstract In this article, the Ansys Workbench was used to carry out the finite element analysis of 15 kW wind turbine blades with different damaged positions and different damaged degrees. The results show that the change rate of natural frequency, displacement modes, and strain modes of the blades increased with the increase in the damage degree; the change rate of the natural frequency and displacement modes of the blade decreased with the increase in the speed, while the change rate of the strain modes increased; the change allocation ratio of the displacement modes and strain modes after the damage was more obvious at the damage location than other positions, which can be used to locate the damage position of the blade; the change allocation ratio of strain modes is higher than the change allocation ratio of displacement modes when the damage degree is the same, which means that the recognition effect of the strain modes is more significant than that of the displacement modes.

Publisher

Walter de Gruyter GmbH

Subject

Computer Networks and Communications,General Engineering,Modeling and Simulation,General Chemical Engineering

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