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Aeroelastic Response of Suspended Pedestrian Bridges Made of Laminated Wood and Hemp

机译:悬挂式木材和大麻悬挂行人桥的空气弹性响应

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摘要

The work described in this paper investigated, by calculating critical flutter speed, the aeroelastic response of suspended pedestrian bridges made of a laminated wood structure and hemp cables and compared them to bridges with a steel structure and harmonic steel cables. Critical flutter speed was estimated using a numerical two degree of freedom (2-DOF) generalized deck model based on finite-element modal analysis. The critical flutter speeds of two sets of 25 different structural configurations, obtained by varying the deck chord and the permanent deck loads, made of steel and of laminated wood respectively, were estimated using experimental flutter derivatives obtained from 30 wind tunnel experiments. One of the most significant results was that pedestrian bridges made of laminated wood and hemp have a higher torsional frequency than those made of steel and that this affects critical flutter speed. A case study was performed and discussed by analyzing the structural and aeroelastic response of a 250 m pedestrian bridge with a 12 m deck chord and two approximately 32 m tall towers.
机译:本文中描述的工作通过计算临界颤振速度,通过层压木结构和大麻电缆制成的悬挂行人桥的空气弹性响应,并将其与钢结构和谐波钢电缆进行桥梁。使用基于有限元模态分析的数值二维自由度(2-DOF)广义甲板模型估计临界颤动速度。使用从30个风洞实验获得的实验颤动衍生物,估计通过改变由甲基弦和由钢和层压木材制成的钢和层压木材而获得的两组不同的结构配置的临界颤动速度。最重要的结果之一是由层压木材和大麻制成的行人桥梁具有比钢制成的扭转频率更高,这会影响临界颤动速度。通过分析250米行人桥梁的结构和空气弹性响应,用12米甲板弦和两个大约32米高的塔来进行案例研究。

著录项

  • 作者

    Fabio Rizzo;

  • 作者单位
  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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