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首页> 外文期刊>Journal of Performance of Constructed Facilities >Finite-Element Model Updating and Dynamic Responses of Reconstructed Historical Timber Bridges using Ambient Vibration Test Results
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Finite-Element Model Updating and Dynamic Responses of Reconstructed Historical Timber Bridges using Ambient Vibration Test Results

机译:使用环境振动测试结果,有限元模型更新和动态响应重建的历史木材桥梁

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摘要

Historical timber bridges are significant cultural structures and have a long tradition. There are many pre-1950s bridges still in use today. In recent years, great resources have been devoted to the restoration of historical timber bridges to preserve and pass them to the next generations. Because wood is an orthotropic, hygroscopic, and biodegradable material, structural behavior of timber bridges should be evaluated numerically using finite-element (FE) methods before and after restoration and systematic controlled in situ, or nondestructive experimental measurements should be made. This paper considers a historical timber bridge, using numerical modeling and modal testing to determine the structural modal parameters and FE model updating for approximation of numerical results to experimental results. As an application, the Buzlupnar historical timber bridge located in the Cayeli District of Rize, Turkey, is selected. The historical Buzlupnar Bridge was built in the middle of the nineteenth century, restored at different times for different reasons such as fire and wind effects, among others, and restored in 2014-2017. The FE model of Buzlupnar Bridge was formed using commercially available software to detect the initial modal parameters referenced on relief and restoration drawings. The orthotropic material properties are selected according to the laboratory material tests. Results of nondestructive experimental measurements, ambient vibration-based system identification was obtained using the enhanced frequency domain decomposition (EFDD) method (frequency domain) and stochastic subspace identification (SSI) method (time domain). The frequency values and mode shapes obtained by the FE model and experimental measurements are compared. According to these results, six natural frequencies are obtained between 2.0 and 20.0 Hz. Although the mode shapes are compatible with each other, there is a 34.55% difference between the frequency values. In order to reduce the differences, the FE model of the historical timber bridge is updated with a manual update method. Thanks to the model updating, the maximum differences are decreased to below 1% except the fourth mode. To evaluate the influence of FE model update, time-history analyses are applied, and internal forces and displacements are presented. (C) 2019 American Society of Civil Engineers.
机译:历史木材桥梁是重要的文化结构,具有悠久的传统。今天仍有许多20世纪50年代的桥梁。近年来,众多资源致力于恢复历史木材桥梁以保护并将其传递给下一代。由于木材是正交性,吸湿性和可生物降解的材料,所以木材桥的结构行为应该在原位恢复和系统控制之前和后期和系统控制之前和之后进行数值使用有限元(Fe)方法,或者应该进行无损实验测量。本文考虑了历史木桥,使用数值建模和模态测试来确定结构模态参数和FE模型更新,以便对实验结果的数值结果近似。作为一家申请,选择了位于土耳其瑞利大石区的Buzlupnar历史木材桥。历史悠久的Buzlupnar Bridge建于十九世纪中叶,以不同时期的不同原因在不同的原因中,在2014-2017的恢复和恢复。使用商用软件形成Buzlupnar桥的FE模型,以检测释放和恢复附图中引用的初始模态参数。根据实验室材料测试选择正交材料性质。非破坏性实验测量结果,使用增强频域分解(EFDD)方法(频域)和随机子空间识别(SSI)方法(时域)获得环境振动的系统识别。比较了通过FE模型和实验测量获得的频率值和模式形状。根据这些结果,在2.0和20.0Hz之间获得六个自然频率。虽然模式形状彼此兼容,但频率值之间存在34.55%。为了减少差异,使用手动更新方法更新历史木桥的FE模型。由于模型更新,除第四模式之外,最大差异降至1%以下。为了评估Fe模型更新的影响,应用了时间历史分析,并提出了内部力和位移。 (c)2019年美国土木工程师协会。

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