Crack detection technique for operating wind turbine blades using Vibro-Acoustic Modulation

Author:

Kim Sungmin1,Adams Douglas E2,Sohn Hoon3,Rodriguez-Rivera Gustavo1,Myrent Noah2,Bond Ray1,Vitek Jan1,Carr Scott1,Grama Ananth1,Meyer Janette Jaques2

Affiliation:

1. Purdue University, West Lafayette, IN, USA

2. Vanderbilt University, Nashville, TN, USA

3. Korea Advanced Institute of Science and Technology, Daejeon, South Korea

Abstract

This article presents a new technique for identifying cracks in wind turbine blades undergoing operational loads using the Vibro-Acoustic Modulation technique. Vibro-Acoustic Modulation utilizes a low-frequency pumping excitation signal in conjunction with a high-frequency probing excitation signal to create the modulation that is used to identify cracks. Wind turbines provide the ideal conditions in which Vibro-Acoustic Modulation can be utilized because wind turbines experience large low-frequency structural vibrations during operation which can serve as the low-frequency pumping excitation signal. In this article, the theory for the vibro-acoustic technique is described, and the proposed crack detection technique is demonstrated with Vibro-Acoustic Modulation experiments performed on a small Whisper 100 wind turbine in operation. The experimental results are also compared with two other conventional vibro-acoustic techniques in order to validate the new technique. Finally, a computational study is demonstrated for choosing a proper probing signal with a finite element model of the cracked blade to maximize the sensitivity of the technique for detecting cracks.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Biophysics

Reference16 articles.

1. Structural health monitoring for a wind turbine system: a review of damage detection methods

2. Wind Energy - The Facts

3. Yoder NC. The robust detection of cracks in complex aerospace structures using nonlinear Vibro-Acoustic Modulation. PhD Dissertation, Purdue University, West Lafayette, IN, 2010.

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