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Titlebook: Computational Techniques for Structural Health Monitoring; Srinivasan Gopalakrishnan,Massimo Ruzzene,Sathyana Book 2011 Springer-Verlag Lo

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1614-7839 ms and results in a way that allows their direct application.The increased level of activity on structural health monitoring (SHM) in various universities and research labs has resulted in the development of new methodologies for both identifying the existing damage in structures and predicting the
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Switzerland in Europe and the World,s, namely the Fourier transform-based, and Wavelet transform-based spectral FEM are presented for both 1D and 2D waveguides. A number of examples are solved using the formulated elements to show the effectiveness of the spectral FEM approach to solve problems involving high frequency dynamic response.
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https://doi.org/10.1007/978-1-349-26045-4s in 2D waveguides are addressed. Wave scattering due to these damage types are investigated with particular focus on composite structures. Examples shown in this chapter use both spectral element formulations previously presented, namely the FSFEM and WSFEM.
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Referendum Campaigns in Swiss Energy Policyelement environment is discussed. The chapter first gives basic introduction to these methods and outlines the procedure for adaptation under spectral FEM environment. A number of examples are given to show the effectiveness of these methods for damage detection.
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Application of the Finite Element Method in SHMnd the frequency of the predefined input signal is then established. Different methods of modeling flaws in FEM and their utility in SHM studies are explained through numerical examples. Limitations of FEM for SHM and possible remedies are also discussed.
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Simplified Spectral Models for Damaged Waveguidess in 2D waveguides are addressed. Wave scattering due to these damage types are investigated with particular focus on composite structures. Examples shown in this chapter use both spectral element formulations previously presented, namely the FSFEM and WSFEM.
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Use of Soft Computing Tools for Damage Detectionelement environment is discussed. The chapter first gives basic introduction to these methods and outlines the procedure for adaptation under spectral FEM environment. A number of examples are given to show the effectiveness of these methods for damage detection.
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