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首页> 外文期刊>Journal of bridge engineering >Analysis and Solution to Human-Induced Lateral Vibrations on a Historic Footbridge
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Analysis and Solution to Human-Induced Lateral Vibrations on a Historic Footbridge

机译:历史性行人天桥上人为引起的横向振动的分析与解决方案

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Recently, it has come to light that footbridges may have problems with human induced vibrations if their lateral period of vibration is of the order of 1 s. This has been highlighted by the much-publicized case of the Millennium Footbridge in London. This paper describes a similar problem associated with the historic Cragside Bridge built circa 1875. This bridge is a wonderful historic bridge built in the grounds of Cragside Manor in Northumberland, United Kingdom by the famous Industrialist Lord Armstrong. An investigation of the bridge revealed that it suffered vibration problems resulting from insufficient lateral stiffness. When lightly loaded (approximately six people) the fundamental lateral natural frequency of vibration was 2.6 Hz. This mode was predominantly a lateral mode of vibration. A computer model of the bridge was developed and various loading scenarios were investigated. As the bridge is very lightweight, the computer model showed that the natural frequency could reduce to 1.12 Hz if the bridge was loaded to 4 kPa. Extra stiffening elements were added to the computer and, depending on the superimposed load, the frequency could be increased from 1.12 to 1.57 Hz (for a 4 kPa uniform live load) and increased to 3.67 Hz for an imposed load equivalent to approximately nine people. It is believed that this will help to remedy the problem, but further research is being conducted to reduce the problem further.
机译:最近,人们发现,如果人行桥的横向振动周期为1 s左右,则人为振动可能会产生问题。伦敦千年行人天桥这一广为人知的案例突显了这一点。本文描述了与约1875年左右建造的历史悠久的克拉格赛德大桥相关的类似问题。这座桥是由著名的实业家工业强人阿姆斯特朗勋爵在英国诺森伯兰郡的克拉格赛德庄园地面上建造的一座奇妙的历史性桥梁。对桥梁的调查显示,由于横向刚度不足,它遭受了振动问题。轻载(大约六个人)时,基本的横向横向固有振动频率为2.6 Hz。该模式主要是横向振动模式。开发了桥梁的计算机模型,并研究了各种载荷情况。由于电桥非常轻巧,计算机模型表明,如果电桥加载至4 kPa,固有频率可能会降低至1.12 Hz。在计算机上添加了额外的加强元件,并且根据叠加的载荷,可以将频率从1.12 Hz增加到1.57 Hz(对于4 kPa均匀活动载荷),而对于等于大约9个人的施加载荷,则可以增加到3.67 Hz。相信这将有助于解决该问题,但是正在进行进一步的研究以进一步减少该问题。

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