...
首页> 外文期刊>Structural Control and Health Monitoring >Improved long-span bridge modeling using data-driven identification of vehicle-induced vibrations
【24h】

Improved long-span bridge modeling using data-driven identification of vehicle-induced vibrations

机译:利用数据驱动识别改进的长跨度桥梁建模车辆诱导的振动

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The paper introduces a procedure to automatically identify key vehicle characteristics from vibrations data collected on a suspension bridge. The primary goal is to apply a model of the dynamic displacement response of a long-span suspension bridge to traffic loading, suitable for automatic identification of the vehicle passage over the bridge. The second goal is to improve the estimation of the structural damping of the bridge deck by utilizing the free-decay displacement response induced by the passing vehicles. The vehicles responsible for a significant bridge vertical response are first identified using an outlier analysis and a clustering algorithm. Utilizing a moving mass model, the equivalent mass and speed of each vehicle, as well as its arrival time, are assessed in a least-squares sense. The computed vertical displacement response shows a remarkably good agreement with the full-scale data in terms of peak values and root-mean-square values of the displacement histories. The data acquired on the Lysefjord Bridge (Norway) indicate that the contribution of heavy traffic loading to the combined effects of wind and traffic excitation may be significant even at mean wind speeds above 10 m s(-1). The critical damping ratios of the most significant vibrational modes of the Lysefjord Bridge are studied for low wind velocities, using the time-decomposition technique and the traffic-induced free-decay response of the bridge deck. The structural damping ratios estimated this way are found to be more accurate than those obtained with an automated covariance-driven stochastic subspace identification algorithm applied to the same dataset.
机译:本文介绍了一种方法,用于从悬架桥上收集的振动数据自动识别关键车辆特征。主要目标是应用长度悬架桥的动态位移响应模型到交通负荷,适用于在桥上自动识别车辆通道。第二个目标是通过利用通过车辆引起的自由衰减位移应答来改善桥角结构的结构阻尼的估计。首先使用异常分析和聚类算法识别负责显着桥梁垂直响应的车辆。利用移动质量模型,在最小二乘意义上评估每个车辆的等效质量和速度,以及其到达时间。计算的垂直位移响应显示出在位移历史的峰值值和根均方值方面与满量程数据相当良好的协议。在Lysefjord Bridge(挪威)上获取的数据表明,即使在10 m S(-1)高于10 m s(-1)的平均风速下,繁重的交通负荷对风和交通激励的组合效果的贡献可能是显着的。使用时间分解技术和桥式甲板的交通诱导的自由衰减响应,研究了Lysefjord桥梁最显着的振动模式的临界阻尼比。估计这种方式的结构阻尼比率比用应用于同一数据集的自动协方差驱动的随机子空间识别算法更准确。

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