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AuthorRenno, Jamil
AuthorSassi, Sadok
AuthorAlnahhal, Wael I.
Available date2023-11-30T09:17:26Z
Publication Date2021-01-26
Publication NameJVC/Journal of Vibration and Control
Identifierhttp://dx.doi.org/10.1177/1077546320981315
CitationRenno, J., Sassi, S., & Alnahhal, W. I. (2022). Calculating the response of waveguides to base excitation using the wave and finite element method. Journal of Vibration and Control, 28(5-6), 652-664.
ISSN1077-5463
URIhttps://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85111495349&origin=inward
URIhttp://hdl.handle.net/10576/49864
AbstractThe prediction of the response of waveguides to time-harmonic base excitations has many applications in mechanical, aerospace and civil engineering. The response to base excitations can be obtained analytically for simple waveguides only. For general waveguides, the response to time-harmonic base excitations can be obtained using the finite element method. In this study, we present a wave and finite element approach to calculate the response of waveguides to time-harmonic base excitations. The wave and finite element method is used to model free wave propagation in the waveguide, and these characteristics are then used to find the amplitude of excited waves in the waveguide. Reflection matrices at the boundaries of the waveguide are then used to find the amplitude of the travelling waves in the waveguide and subsequently the response of the waveguide. This includes the displacement and stress frequency response transfer functions. Numerical examples are presented to demonstrate the approach and to discuss the numerical efficiency of the proposed method.
SponsorThe financial support provided by the Qatar National Research Fund through the National Priorities Research Program under grant number NPRP 11S-1220-170112 and Qatar University Internal Grant QUCG-CENG-19/20-26.
Languageen
PublisherSAGE
Subjectfree wave propagation
frequency response transfer function
Time-harmonic base excitation
wave and finite element
TitleCalculating the response of waveguides to base excitation using the wave and finite element method
TypeArticle
Pagination652-664
Issue Number5-6
Volume Number28
ESSN1741-2986


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