基于振动测量的桁架桥梁损伤检测简易技术研究

Sudath C. Siriwardane
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引用次数: 36

摘要

桥梁的通行量和重量增加,构件劣化和大量的应力循环。因此,有必要对钢质铁路桥梁的现状进行评估。结构健康监测的常用方法大多基于目测和无损检测方法。目视检查是不可靠的,因为这些检查取决于检查员背后的不确定性和他们的经验。此外,发现无损检测方法是昂贵的。因此,近年来的研究发现,基于动力模态参数或振动测量的结构健康监测方法不仅经济,而且可以对民用基础设施的损伤状态提供更现实的预测。为此,本文提出了一种基于实测模态参数定位铁路桁架桥损伤区域的简单方法。通过一个案例对该技术进行了讨论。本文首先描述了所考虑的铁路桥的细节。然后在单独的章节中讨论目视检查、材料试验和原位载荷试验的观察结果。全面讨论了所考虑的桥梁的验证有限元模型的开发。因此,模态参数随损伤位置的变化被绘制出来。通过对比实测的相应模态参数,可作为今后定期检查铁路桥梁损伤定位的主要参考。最后对振动周期性测量和损伤定位技术进行了详细说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vibration measurement-based simple technique for damage detection of truss bridges: A case study

The bridges experience increasing traffic volume and weight, deteriorating of components and large number of stress cycles. Therefore, assessment of the current condition of steel railway bridges becomes necessary. Most of the commonly available approaches for structural health monitoring are based on visual inspection and non-destructive testing methods. The visual inspection is unreliable as those depend on uncertainty behind inspectors and their experience. Also, the non-destructive testing methods are found to be expensive. Therefore, recent researches have noticed that dynamic modal parameters or vibration measurement-based structural health monitoring methods are economical and may also provide more realistic predictions to damage state of civil infrastructure. Therefore this paper proposes a simple technique to locate the damage region of railway truss bridges based on measured modal parameters. The technique is discussed with a case study. Initially paper describes the details of considered railway bridge. Then observations of visual inspection, material testing and in situ load testing are discussed under separate sections. Development of validated finite element model of the considered bridge is comprehensively discussed. Hence, variations of modal parameters versus position of the damage are plotted. These plots are considered as the main reference for locating the damage of the railway bridge in future periodical inspection by comparing the measured corresponding modal parameters. Finally the procedure of periodical vibration measurement and damage locating technique are clearly illustrated.

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