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首页> 外文期刊>Journal of Performance of Constructed Facilities >System Identification of a Six-Span Steel Railway Bridge Using Ambient Vibration Measurements at Different Temperature Conditions
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System Identification of a Six-Span Steel Railway Bridge Using Ambient Vibration Measurements at Different Temperature Conditions

机译:在不同温度条件下使用环境振动测量的六跨钢铁桥系统识别

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This paper presents modal parameter estimation work on a steel railway bridge at three different temperature conditions using ambient vibration test data. The bridge was built at the end of the 19th century using the available technology of its time. It is composed of six spans, each 30 m long, with a total length of 180 m. It is slightly curved in the horizontal plane with a radius of 300 m, and has a vertical grade of 2.5%. Modal parameters of the bridge were estimated using two different output-only system identification methods. The identified results obtained under different temperature conditions were compared in assessing the effects of temperature variation in the identification results. A comparative study in assessing method-to-method and test-to-test variability was also conducted. A three-dimensional finite-element model of the bridge was developed. In order to match the experimentally obtained modal parameters with the numerical ones, a trial-and-error-based model updating study was conducted. This way, a benchmark model of the 199+325 steel railway bridge was obtained for future capacity assessment, prediction, and sensitivity-based model updating work.
机译:本文介绍了使用环境振动测试数据在三个不同温度条件下钢铁铁路桥的模态参数估计工作。这座桥建于19世纪末,使用其时间的可用技术。它由六个跨度组成,每30米长,总长度为180米。它在水平平面略微弯曲,半径为300米,垂直等级为2.5%。使用两个不同的输出系统识别方法估计桥梁的模态参数。比较在不同温度条件下获得的鉴定结果在评估温度变化对鉴定结果中的影响。还进行了评估方法和试验到测试变异性的对比研究。开发了桥的三维有限元模型。为了将实验获得的模态参数与数值匹配匹配,进行了基于试误的模型更新研究。这样,获得了199 + 325钢铁桥的基准模型,以获得未来的容量评估,预测和基于灵敏度的模型更新工作。

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