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Field monitoring and response characteristics of longitudinal movements of expansion joints in long-span suspension bridges

机译:长跨度悬架桥梁膨胀接头纵向运动的现场监测与响应特性

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The longitudinal movement of the expansion joint affects the wear of the bearing and the fatigue damage of the expansion joint itself. A long-term monitoring on a long-span suspension bridge has been set up to reveal the mechanism and the response characteristic of the longitudinal movement of the expansion joint. This paper presents the field measurement results and analysis of the longitudinal movement. The results show that the temperature variation results in the fluctuation of the longitudinal movement of the expansion joint. Whereas, the high-frequency components are dominated by the vehicle and ambient excitations. Moreover, the RMS movement and the temperature show a significant linear relationship. Then, the frequency-domain analysis is performed to investigate the spectral characteristic of the longitudinal movement. It is shown that the quasi-static effect of the vehicle governs the longitudinal movement at 10-min interval, and the dynamic effect of the vehicle plays an important role in the cumulative movement of the expansion joint. At last, the sway vibration of the girder is discussed through the finite element model of the suspension bridge, and the effects of the central buckle on the longitudinal movement of the expansion joint are investigated. (C) 2020 Elsevier Ltd. All rights reserved.
机译:膨胀接头的纵向运动会影响轴承的磨损和膨胀接头本身的疲劳损坏。已经建立了在长跨度悬架桥上的长期监测,以揭示膨胀接头的纵向运动的机构和响应特性。本文介绍了纵向运动的现场测量结果和分析。结果表明,温度变化导致膨胀接头的纵向运动的波动。鉴于高频分量由车辆和环境激励主导。此外,RMS运动和温度显示出显着的线性关系。然后,进行频域分析以研究纵向运动的光谱特性。结果表明,车辆的准静态效果在10分钟间隔的纵向运动处控制,并且车辆的动态效果在膨胀接头的累积运动中起重要作用。最后,通过悬架桥的有限元模型讨论梁的摇摆振动,并研究了中央扣对膨胀接头的纵向运动的影响。 (c)2020 elestvier有限公司保留所有权利。

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