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Monitoring dynamic behaviour of a long-span railway bridge

机译:监控大跨度铁路桥梁的动力特性

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A new long-span prestressed railway bridge was instrumented to better understand and monitor its dynamic behaviour. The bridge is a unique and geometrically complex concrete structure with a very slender box girder section and a slab track system. This paper briefly describes the instrumentation used for monitoring the structural behaviour and focuses on investigating the dynamic characteristics of the bridge. The bridge's dynamic properties were estimated using the output only stochastic subspace identification technique - for which the theory and analysis technique are briefly described - together with more traditional peak picking methods. Natural frequencies of the bridge were identified and verified from a previous study. The obtained frequencies and damping ratios are to be used in updating the developed finite element model. In addition, extreme bridge acceleration values from different train passages were collected and compared with the recommended limit value in bridge design codes.
机译:一座新的大跨度预应力铁路桥梁被用来更好地理解和监测其动态行为。桥梁是独特的,几何形状复杂的混凝土结构,具有非常细长的箱形梁截面和平板轨道系统。本文简要介绍了用于监视结构行为的仪器,并着重于研究桥梁的动力特性。使用仅输出的随机子空间识别技术(更简要地描述了理论和分析技术)以及更传统的峰拾取方法来估算桥梁的动力特性。桥梁的固有频率已从先前的研究中确定并验证。获得的频率和阻尼比将用于更新开发的有限元模型。此外,还收集了来自不同列车通道的极端桥梁加速度值,并将其与桥梁设计规范中建议的极限值进行比较。

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