首页> 外文期刊>Thin-Walled Structures >Dynamic behaviour of a GFRP-steel hybrid pedestrian bridge in serviceability conditions. Part 2: Numerical and analytical study
【24h】

Dynamic behaviour of a GFRP-steel hybrid pedestrian bridge in serviceability conditions. Part 2: Numerical and analytical study

机译:GFRP-钢混合人行桥在使用条件下的动态行为。第2部分:数值分析研究

获取原文
获取原文并翻译 | 示例

摘要

The Part 2 of this two-part paper reports numerical and analytical studies concerning the serviceability dynamic behaviour under dynamic human loads of a typical GFRP-steel hybrid girder system for pedestrian bridges. These studies, which focused on the recent St. Mateus footbridge (Portugal), had two main objectives: (i) to assess the ability of conventional numerical models and analytical formulae to simulate the vibration behaviour of GFRP-steel hybrid footbridges; and (ii) to complement the observations and measurements made in the experimental campaign (Part 1), thus providing in-depth understanding of the vibration performance of this type of footbridges. First, a finite element (FE) model was developed and calibrated with the static and, modal experimental data. Then, the FE-model was used to evaluate the vibration response of the footbridge for the same pedestrian activities induced in situ. The design formulae available in the literature for predicting the maximum acceleration of structural systems are also reviewed and were applied to evaluate the resonant response of the footbridge for both single and crowded conditions of pedestrian traffic. The results obtained confirmed the adequate structural behaviour of the St. Mateus footbridge under real dynamic (human) pedestrian load cases and show that this innovative GFRP-steel hybrid structural solution is suitable for pedestrian bridges. The results of the different investigations reported in this paper also showed that both numerical and analytical approaches are able to predict the vibration response of GFRP-steel hybrid footbridges with reasonable accuracy.
机译:这份由两部分组成的文章的第二部分报告了有关人行天桥的典型GFRP-钢混合梁系统在动态人类荷载下的可使用性动态行为的数值分析研究。这些研究集中在最近的圣马特乌斯人行天桥(葡萄牙)上,主要有两个目的:(i)评估常规数值模型和解析公式模拟GFRP-钢混合人行桥的振动行为的能力; (ii)补充实验活动(第1部分)中所做的观察和测量,从而深入了解此类人行天桥的振动性能。首先,开发了有限元(FE)模型,并使用静态和模态实验数据进行了校准。然后,使用有限元模型来评估人行桥在原地引起的相同行人活动的振动响应。还回顾了文献中可用于预测结构系统最大加速度的设计公式,并将这些公式应用于行人交通单一和拥挤情况下人行桥的共振响应。获得的结果证实了圣马特乌斯人行天桥在实际动态(人为)行人荷载作用下的适当结构行为,并表明这种创新的GFRP-钢混合结构解决方案适用于人行天桥。本文报道的不同研究的结果还表明,数值和分析方法都能够以合理的精度预测GFRP-钢混合式人行桥的振动响应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号