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Evaluation of torsional response of a long-span suspension bridge under railway traffic and typhoons based on SHM data

机译:基于SHM数据的大跨度悬索桥在铁路交通和台风作用下的扭转响应评估

摘要

Long-span cable-supported bridges are flexible structures vulnerable to unsymmetric loadings such as railway traffic and strong wind. The torsional dynamic response of long-span cable-supported bridges under running trains and/or strong winds may deform the railway track laid on the bridge deck and affect the running safety of trains and the comfort of passengers, and even lead the bridge to collapse. Therefore, it is eager to figure out the torsional dynamic response of long-span cable-supported bridges under running trains and/or strong winds. The Tsing Ma Bridge (TMB) in Hong Kong is a suspension bridge with a main span of 1,377 m, and is currently the world's longest suspension bridge carrying both road and rail traffic. Moreover, this bridge is located in one of the most active typhoon-prone regions in the world. A wind and structural health monitoring system (WASHMS) was installed on the TMB in 1997, and after 17 years of successful operation it is still working well as desired. Making use of one-year monitoring data acquired by the WASHMS, the torsional dynamic responses of the bridge deck under rail traffic and strong winds are analyzed. The monitoring results demonstrate that the differences of vertical displacement at the opposite edges and the corresponding rotations of the bridge deck are less than 60 mm and respectively under weak winds, and less than 300 mm and respectively under typhoons, implying that the torsional dynamic response of the bridge deck under rail traffic and wind loading is not significant due to the rational design.
机译:大跨度斜拉桥是一种柔性结构,容易受到不对称载荷的影响,例如铁路交通和强风。大跨度斜拉桥在行驶的火车和/或强风作用下的扭转动力响应可能会使铺设在桥面上的铁轨变形,影响火车的行驶安全性和乘客的舒适度,甚至导致桥梁倒塌。因此,迫切需要弄清在运行的火车和/或强风下大跨度斜拉桥的扭转动力响应。香港的青马大桥(TMB)是一座主跨1,377 m的悬索桥,是目前世界上最长的悬索桥,可同时进行公路和铁路交通。此外,这座桥位于世界上最活跃的台风多发区之一。 TMB于1997年安装了风和结构健康监测系统(WASHMS),在成功运行17年后,它仍然可以按预期运行。利用WASHMS的一年监测数据,分析了桥梁在铁路交通和强风作用下的扭转动力响应。监测结果表明,在弱风条件下,桥面相对边缘处的竖向位移和相应的桥面转动分别小于60mm,在台风情况下分别小于300mm,这意味着桥面的扭转动力响应由于合理的设计,铁路交通和风荷载作用下的桥面并不重要。

著录项

  • 作者

    Xia YX; Ni YQ; Zhang C;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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