4.7 Article

Nonlinear cable-deck interaction vibrations of cable-stayed bridges

期刊

JOURNAL OF SOUND AND VIBRATION
卷 544, 期 -, 页码 -

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jsv.2022.117428

关键词

Nonlinear vibrations; Perturbation method; Cable -deck interaction; Modal coupling; Parametric excitation; Mass ratio

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This paper introduces a nonlinear cable-supported model that considers the interaction between cables and the bridge deck in cable-stayed bridges. Analytical solutions are derived using scaling and averaging methods, revealing vibration behavior different from simple cable-only systems. The results highlight the strong influence of the mass ratio between cables and the deck on the cable-deck interaction.
In modern cable-stayed bridges, cables connect with other components such as the bridge deck and dynamic interactions occur between the cables and the rest of the structure. When the natural frequencies of a global vibrational mode and a cable mode are close, there can be significant interactions between the cable and deck. This can lead to vibration behaviour different to that of a simple cable-only dynamic system and hence vulnerability to cable fatigue or overloading. In this paper, a nonlinear cable-supported model is introduced. This model of one cable attached at the top of the deck allows for cable inclination, small sagging and multiple vibrational modes in two planes. Using scaling and averaging methods, analytical solutions in the form of non-dimensional polynomial equations have been derived for the steady state vibration amplitudes of the deck and cable of the coupled system. This analysis reveals a significant two resonance peak phenomenon which is not apparent from simpler cable-only analyses. Moreover, the feedback of the cable not only influences the cable response stability, but also the vibration amplitude of the cable and deck response. Results are presented for a typical inclined bridge cable interacting with a deck excited by the external force on the deck, highlighting the strong effect of the mass ratio between the cable and deck on the cable-deck interaction performance. The feedback of the cable vibration on the deck and cable response is non-negligible even for a relatively large mass ratio. Therefore, for practical cable-stayed bridges the interaction between cable and deck needs to be considered to obtain an accurate dynamic response in some cases.

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