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2016 | OriginalPaper | Chapter

21. Extraction of Wave Dispersion Characteristics in a Discrete Chain Using Complex Modal Decomposition

Authors : Rickey A. Caldwell Jr., Smruti Panigrahi, Brian F. Feeny

Published in: Special Topics in Structural Dynamics, Volume 6

Publisher: Springer International Publishing

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Abstract

The dispersion relationship of a discrete chain of masses is extracted from numerically simulated data by applying complex modal decomposition. When an impulse excitation is applied to one end of a semi-infinite mass-spring chain, a wave is generated and propagates down the chain. This wave consists of various modes. The time record for the generated data is limited such that the wave reflection does not return to the “sensed” masses. For example, a 250-mass chain is simulated, and we consider (or sensed) the time record of the first 100 masses. The data collected from the numerical simulation consists of the displacements of each mass at each time step. This data is then used to extract complex modes using the complex orthogonal decomposition (COD) and smooth complex orthogonal decomposition. The extracted complex modes accommodate modal traveling waves. We then compute the frequencies and wave numbers from modal coordinates and mode shapes, respectively. The amplitudes and frequencies of the modes are also estimated using Rayleigh’s quotients. The COD extracted dispersion relationship matched the analytical prediction of the dispersion curve for the linear mass chain.

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Metadata
Title
Extraction of Wave Dispersion Characteristics in a Discrete Chain Using Complex Modal Decomposition
Authors
Rickey A. Caldwell Jr.
Smruti Panigrahi
Brian F. Feeny
Copyright Year
2016
DOI
https://doi.org/10.1007/978-3-319-29910-5_21

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