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A monitoring-based approach for evaluating dynamic responses of riding vehicle on long-span bridge under strong winds

机译:一种基于监测的强风中长跨度桥梁动力响应的基于监测方法

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摘要

Serviceability performances of the long span bridge during strong winds, including the safety and comfort condition of driving road vehicle on the bridge, have attracted more and more attention in recent years. The dynamic behavior of the riding vehicle is essential for serviceability performance assessment. The vehicle-bridge coupling (VBC) simulation, featured as time-consuming, is traditionally applied, however, cannot meet the requirement for timely decision. Therefore, a monitoring-based approach, with the hybrid combination of in-situ structural health monitoring (SHM) data and dynamic simulation of single vehicle model, is presented in this paper to estimate the vehicle dynamic responses in a more efficient way. A numerical case study of a quarter vehicle model riding on a simply supported beam bridge is presented to validate the proposed approach. The first step is to investigate the feasibility of reproducing structural responses with the data from limited sensors using interpolation methods. Subsequently, dynamic responses of the riding vehicle are estimated using the monitoring-based approach. The influences of random traffic and wind loads are also considered. The estimated vehicle responses generally match VBC-based results, which proves reliability of the monitoring-based approach. Furthermore, the SHM data of a long-span bridge are utilized to investigate the potential usage of the proposed method. In particular, the dynamic responses of a popular light truck on the bridge and rigid road are respectively estimated and compared with each other. Results show that, among all the factors, i.e., bridge vibration, wind loads, and road roughness, the bridge vibration contributes the majority to the vertical vibration of the vehicle. For the lateral and torsional vibration of the vehicle, wind forces and bridge vibration are dominant factors. To summarize, the monitoring-based approach could help to estimate the dynamic responses of the riding vehicle on the bridge with a good reliability, regardless of the operation condition of the bridge, and provide timely and reliable information for serviceability and safety assessment.
机译:强风中长跨度桥的可维护性表演,包括沿线驾驶道路车辆的安全性和舒适条件,近年来吸引了越来越多的关注。骑乘车辆的动态行为对于可维护性绩效评估至关重要。然而,传统上应用了以耗时的耗时的车辆桥耦合(VBC)模拟不能满足及时决定的要求。因此,本文介绍了基于监测的方法,利用原位结构健康监测(SHM)数据和单车型的动态模拟的杂合组合,以更有效的方式估计车辆动态响应。提出了在简单支持的光束桥上乘坐四分之一车辆模型骑行的数值研究以验证所提出的方法。第一步是研究使用插值方法从有限传感器的数据再现结构响应的可行性。随后,使用基于监视的方法估计骑乘车辆的动态响应。还考虑了随机交通和风力荷载的影响。估计的车辆响应通常匹配基于VBC的结果,这证明了基于监测的方法的可靠性。此外,利用长跨度桥的SHM数据来研究所提出的方法的潜在用法。特别地,据估计并彼此比较了桥梁和刚性道路上的流行轻型卡车的动态响应。结果表明,在所有因素中,即桥梁振动,风力荷载和道路粗糙度中,桥梁振动有助于车辆的垂直振动。对于车辆的横向和扭转振动,风力和桥梁振动是显性因素。为了总结,基于监测的方法可以帮助估计具有良好可靠性的桥梁对桥梁上的动态响应,无论桥的操作条件如何,提供可靠的可靠性和安全评估信息。

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