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Dynamic stress analysis of long suspension bridges under wind, railway, and highway loadings

机译:风,铁路和公路荷载作用下长悬索桥的动态应力分析

摘要

Computation of the dynamic stress of long suspension bridges under multiloadings is essential for either the strength or fatigue assessment of the bridge. This paper presents a framework for dynamic stress analysis of long suspension bridges under wind, railway, and highway loadings. The bridge, trains, and road vehicles are respectively modeled using the finite-element method (FEM). The connections between the bridge and trains and between the bridge and road vehicles are respectively considered in terms of wheel-rail and tire-road surface contact conditions. The spatial distributions of both buffeting forces and self-excited forces over the bridge deck surface are considered. The Tsing Ma suspension bridge and the field measurement data recorded by a wind and structural health monitoring system (WASHMS) installed in the bridge are utilized as a case study to examine the proposed framework. The information on the concerned loadings measured by the WASHMS is taken as inputs for the computation simulation, and the computed stress responses are compared with the measured ones. The results show that running trains play a predominant role in bridge stress responses compared with running road vehicles and fluctuating wind loading.
机译:在多载荷下长悬索桥的动应力计算对于桥梁的强度或疲劳评估至关重要。本文为风,铁路和公路荷载下的长悬索桥提供了动态应力分析的框架。桥梁,火车和公路车辆分别使用有限元方法(FEM)进行建模。桥梁和火车之间以及桥梁和公路车辆之间的连接分别根据轮轨和轮胎-路面的接触条件来考虑。考虑了桥面表面上的抖振力和自激力的空间分布。青马悬索桥和由安装在该桥中的风力和结构健康监测系统(WASHMS)记录的现场测量数据被用作案例研究,以研究提议的框架。通过WASHMS测量的有关载荷的信息被用作计算仿真的输入,并将计算出的应力响应与测量的应力响应进行比较。结果表明,与行驶的公路车辆和起伏的风荷载相比,行驶的列车在桥梁应力响应中起主要作用。

著录项

  • 作者

    Chen ZW; Xu YL; Li Q; Wu DJ;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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