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首页> 外文期刊>Journal of Performance of Constructed Facilities >Modal Testing, Finite-Element Model Updating, and Dynamic Analysis of an Arch Type Steel Footbridge
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Modal Testing, Finite-Element Model Updating, and Dynamic Analysis of an Arch Type Steel Footbridge

机译:拱型钢人行天桥的模态测试,有限元模型更新和动力分析

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This paper describes an arch type steel footbridge, its analytical modeling, modal testing, finite-element model updating, and dynamic analysis. A modern steel footbridge which has an arch type structural system and is located on the Karadeniz coast road in Trabzon, Turkey is selected as an application. An analytical modal analysis is performed on the developed three-dimensional finite-element model of footbridge to provide analytical frequencies and mode shapes. Field ambient vibration tests on the footbridge deck under natural excitation such as human walking and traffic loads are conducted. The output-only modal parameter identification is carried out by using peak picking of the average normalized power spectral densities in the frequency domain and stochastic subspace identification in the time domain, and dynamic characteristics such as natural frequencies, mode shapes, and damping ratios are determined. The finite-element model of the footbridge is updated to minimize the differences between analytically and experimentally estimated modal properties by changing some uncertain modeling parameters such as material properties. Dynamic analyses of the footbridge before and after finite-element model updating are performed using the 1992 Erzincan earthquake record. At the end of the study, maximum differences in the natural frequencies are reduced from 22 to only 5 percent and good agreement is found between analytical and experimental dynamic characteristics such as natural frequencies and mode shapes by model updating. Also, maximum displacements and principal stresses before and after model updating are compared with each other.
机译:本文介绍了一种拱型钢人行天桥,其分析建模,模态测试,有限元模型更新以及动力分析。选择了位于土耳其特拉布宗的Karadeniz沿海道路上的具有拱形结构系统的现代钢质人行桥。对开发的人行桥三维有限元模型进行了分析模态分析,以提供分析频率和振型。在人为步行和交通负荷等自然激励下,对人行天桥甲板进行了现场环境振动测试。通过使用频域中平均归一化功率谱密度的峰值选择和时域中的随机子空间识别来执行仅输出模态参数识别,并确定动态特性,例如固有频率,模式形状和阻尼比。通过更改一些不确定的建模参数(例如材料属性),更新了行人天桥的有限元模型,以最小化分析和实验估计的模态属性之间的差异。使用1992年的Erzincan地震记录,对有限元模型更新前后的人行桥进行了动力分析。在研究结束时,固有频率的最大差异从22%降低到只有5%,并且通过模型更新,在分析和实验动态特性(例如固有频率和模式形状)之间找到了很好的一致性。另外,将模型更新前后的最大位移和主应力进行了比较。

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