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Computer simulation of buffeting actions of suspension bridges under turbulent wind

机译:湍流作用下悬索桥抖振作用的计算机模拟。

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摘要

Suspension bridges are long-span flexible structures susceptible to various types of wind induced vibrations such as buffeting actions. In this paper, a three dimensional finite-element model formulated to deal with suspension bridges under turbulent wind is presented. In this model, all sources of geometric nonlinearity such as cable sage, force-bending moment interaction in the bridge deck and towers, and changes of bridge geometry due to large displacements, are fully considered. The wind loads, composed of steady-state wind loads, buffeting loads and self-excited loads, are converted into time domain by using the computer simulation technique. The Newmark-β step by step numerical integration algorithm is used to calculate the buffeting responses of brideges. Compared with the results obtained by classical buffeting theory, the validity of the simulation is proved.
机译:悬索桥是大跨度的柔性结构,容易受到各种类型的风振(例如抖振)的影响。本文提出了一种三维有限元模型,用于处理湍流下的悬索桥。在该模型中,充分考虑了几何非线性的所有来源,例如电缆鼠尾草,桥面板和塔架中的力弯矩相互作用以及由于大位移而引起的桥梁几何形状的变化。利用计算机仿真技术将由稳态风荷载,抖振荷载和自激荷载组成的风荷载转换为时域。 Newmark-β逐步数值积分算法用于计算支腿的抖振响应。与经典的抖振理论得到的结果进行比较,证明了仿真的有效性。

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