首页> 外文期刊>Thin-Walled Structures >Dynamic behaviour of a GFRP-steel hybrid pedestrian bridge in serviceability conditions. Part 1: Experimental study
【24h】

Dynamic behaviour of a GFRP-steel hybrid pedestrian bridge in serviceability conditions. Part 1: Experimental study

机译:GFRP-钢混合人行桥在使用条件下的动态行为。第1部分:实验研究

获取原文
获取原文并翻译 | 示例

摘要

Glass fibre reinforced polymer (GFRP) composites are being increasingly used in bridge engineering in a wide range of forms, including pultruded thin-walled multicellular deck panels, which allow for the fast installation of lightweight and slender footbridges. The lightness and slenderness of these panels, together with the damping and low elasticity modulus of the pultruded GFRP material, render these bridge decks potentially more susceptible to human-induced vibrations when compared to other equally slender non-composite systems. However, very limited information is available about the serviceability dynamic behaviour of GFRP footbridges, in particular about composite deck-to-girder systems. In this context, this paper presents an experimental study about the static and dynamic responses of the St. Mateus footbridge (recently built in Portugal), representative of a typical GFRP-steel hybrid solution. The investigation included: (i) static load tests, (ii) modal identification tests, and (iii) vibration tests for different dynamic pedestrian load cases. In general, the acceleration-time records obtained attested an adequate structural responses of the footbridge, in terms of both vertical peak and root mean squared (RMS) acceleration values, even for the most severe load cases (deck loaded at 33% and crowded condition). In spite of relatively high acceleration peaks for pedestrians crossing in running mode, results obtained also show that there is low probability of user discomfort. In a companion paper (Part 2), the experimental results presented herein are used to assess the accuracy of conventional numerical models and analytical formulae in predicting the vibration response of the St. Mateus footbridge.
机译:玻璃纤维增​​强聚合物(GFRP)复合材料正以各种形式越来越多地用于桥梁工程中,包括拉挤薄壁多单元甲板面板,从而可以快速安装轻巧细长的人行天桥。与其他同样细长的非复合系统相比,这些面板的轻便和细长以及拉挤的GFRP材料的阻尼和低弹性模量使这些桥面板更容易受到人为振动的影响。但是,关于GFRP人行天桥的可使用性动态行为,特别是关于复合板梁系统的可用信息非常有限。在这种情况下,本文提供了关于圣马特乌斯人行天桥(最近在葡萄牙建造)的静态和动态响应的实验研究,这是典型的GFRP-钢混合动力解决方案的代表。调查包括:(i)静态载荷测试,(ii)模态识别测试,以及(iii)针对不同动态行人载荷情况的振动测试。通常,即使在最严重的载荷情况下(甲板载荷为33%且拥挤的情况下),获得的加速时间记录也证明了人行桥在垂直峰值和均方根(RMS)加速值方面的适当结构响应。 )。尽管行人在行驶模式下过马路的加速度峰值相对较高,但获得的结果也表明,用户不舒适的可能性很小。在随附的论文(第2部分)中,此处介绍的实验结果用于评估常规数值模型和分析公式在预测St. Mateus人行天桥的振动响应中的准确性。

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