Structural Engineering and Mechanics
Volume 38, Number 1, 2011, pages 81-97
DOI: 10.12989/sem.2011.38.1.081
Wavelet-based damage detection method for a beam-type structure carrying moving mass
Hakan Gokdag
Abstract
In this research, the wavelet transform is used to analyze time response of a cracked beam carrying moving mass for damage detection. In this respect, a new damage detection method based on the combined use of continuous and discrete wavelet transforms is proposed. It is shown that this method is more capable in making damage signature evident than the traditional two approaches based on direct
investigation of the wavelet coefficients of structural response. By the proposed method, it is concluded that strain data outperforms displacement data at the same point in revealing damage signature. In addition, influence of moving mass-induced terms such as gravitational, Coriolis, centrifuge forces, and pure inertia force along the deflection direction to damage detection is investigated on a sample case. From this analysis it is concluded that centrifuge force has the most influence on making both
displacement and strain data damage-sensitive. The Coriolis effect is the second to improve the damagesensitivity of data. However, its impact is considerably less than the former. The rest, on the other hand, are observed to be insufficient alone.
Key Words
damage detection; wavelet transform; moving mass; cracked beam; strain.
Address
Hakan Gokdag: Department of Mechanical Engineering, Uludag University, 16059 Gorukle, Bursa, Turkey