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Vibration characteristics of shallow suspension bridge with pre-tensioned cables

机译:带有预拉索的浅悬索桥的振动特性

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摘要

Cable supported structures offer an elegant and economical solution for bridging over long spans with resultant low material content and ease of construction. These structures, however, tend to be slender and flexible as the structural stiffness depends mainly on the suspending cables. In this paper a cable supported bridge model with pre-tensioned reverse profiled cables is proposed to carry out a conceptual study on the free vibration characteristics of shallow suspension pedestrian bridge structures. Effects of some structural parameters such as cable sag, cross sectional area, applied mass and pre-tensions in the reverse profiled cables have been investigated. Numerical results show that for cable supported bridges with shallow sag the lowest frequencies correspond to lateral and torsional vibration modes which are always combined together and become two types of coupled modes: coupled lateral-torsional modes, as well as coupled torsional-lateral modes. The effects of structural parameters are complex and the natural frequencies can be altered by introducing different pre-tensions in the reverse profiled cables.
机译:电缆支撑的结构提供了一种优雅,经济的解决方案,可在大跨度上架桥,从而降低了材料含量,简化了施工过程。但是,由于结构刚度主要取决于悬挂的电缆,因此这些结构倾向于细长且具有柔性。本文提出了一种带有预张紧反剖面电缆的索桥模型,以对浅悬索桥的自由振动特性进行概念研究。研究了一些结构参数的影响,例如反型电缆中的电缆垂度,横截面积,施加的质量和预应力。数值结果表明,对于垂度较浅的索桥,最低频率对应于横向和扭转振动模态,它们始终结合在一起,成为两种耦合模式:横向扭转模态和扭转横向模态。结构参数的影响是复杂的,可以通过在反剖面电缆中引入不同的预应力来改变固有频率。

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