首页> 外文期刊>NDT & E International: Independent Nondestructive Testing and Evaluation >Full structural dynamic response from ambient vibration of Giotto's bell tower in Firenze (Italy), using modal analysis and seismic interferometry
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Full structural dynamic response from ambient vibration of Giotto's bell tower in Firenze (Italy), using modal analysis and seismic interferometry

机译:Firenze(意大利)在Firenze(意大利)的环境振动的全结构动态响应,使用模态分析和地震干涉测量

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The preservation of historical buildings mainly depends on our capacity to monitor their ageing and quickly detect potential damage. We show how the dynamic characteristics of a building (i.e., frequency, shapes mode and seismic wave velocity) can be automatically identified and tracked in real-time by combining modal analysis with seismic interferometry. The assessment of these characteristics is performed on Giotto's bell tower in Firenze, Italy, by installing a temporary network of seismic sensors. The natural frequencies and modal shapes of the structure are calculated by enhanced frequency domain decomposition (EFDD). The impulse response functions estimated by following a waveform deconvolution approach are analysed to investigate the seismic wave dispersion in Giotto's bell tower. We show that Giotto's bell tower is a dispersive structure affected by a bending deformation, with a weak contribution from soil-system interaction. Combining the results of operational modal analysis (OMA) and seismic interferometry from the same ambient noise recording provides a unique and complete dynamic response of important monuments such as Giotto's bell tower.
机译:历史建筑的保存主要取决于我们监测衰老的能力,并快速检测潜在的损坏。我们展示了如何通过用地震干涉测量法组合模态分析来自动识别和跟踪建筑物(即频率,形状模式和地震波速度)的动态特性。通过安装临时地震传感器的临时网络,对意大利的北罗托的钟楼进行了对这些特征的评估。通过增强频域分解(EFDD)来计算结构的自然频率和模态形状。分析了通过以下波形去卷积方法估计的脉冲响应函数,以研究Giotto's Bell Tower中的地震波分散。我们表明Giotto的钟楼是受弯曲变形影响的分散结构,从土壤系统相互作用造成薄弱。将操作模态分析(OMA)的结果与相同的环境噪声记录相结合,以及诸如Giotto的钟楼等重要纪念碑的独特和完善的动态响应。

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