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Use of Time- and Frequency-Domain Approaches for Damage Detection in Civil Engineering Structures

机译:时域和频域方法在土木工程结构中的损伤检测中的应用

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摘要

The aim of this paper is to apply both time- and frequency-domain-based approaches on real-life civil engineering structures and to assess their capability for damage detection. The methodology is based on Principal Component Analysis of the Hankel matrix built from output-only measurements and of Frequency Response Functions. Damage detection is performed using the concept of subspace angles between a current (possibly damaged state) and a reference (undamaged) state. The first structure is the Champangshiehl Bridge located in Luxembourg. Several damage levels were intentionally created by cutting a growing number of prestressed tendons and vibration data were acquired by the University of Luxembourg for each damaged state. The second example consists in reinforced and prestressed concrete panels. Successive damages were introduced in the panels by loading heavy weights and by cutting steel wires. The illustrations show different consequences in damage identification by the considered techniques.
机译:本文的目的是将基于时域和频域的方法应用于现实的土木工程结构,并评估其用于损伤检测的能力。该方法基于基于仅输出测量和频率响应函数构建的汉克尔矩阵的主成分分析。使用电流(可能是损坏状态)和参考(未损坏)状态之间的子空间角度的概念来执行损坏检测。第一个结构是位于卢森堡的Champangshiehl桥。通过切断越来越多的预应力筋,有意造成了几种损伤水平,卢森堡大学针对每种损伤状态获取了振动数据。第二个例子是钢筋混凝土和预应力混凝土板。通过装载重物和切割钢丝,在面板上造成了连续的损坏。这些插图显示了通过考虑的技术在损坏识别中的不同后果。

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