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首页> 外文期刊>Journal of Sound and Vibration >Dynamic response of the Trinity River Relief Bridge to controlled pile damage: modeling and experimental data analysis comparing Fourier and Hilbert-Huang techniques
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Dynamic response of the Trinity River Relief Bridge to controlled pile damage: modeling and experimental data analysis comparing Fourier and Hilbert-Huang techniques

机译:三位一体河浮桥对受控桩破坏的动力响应:傅立叶和希尔伯特-黄技术比较的建模和实验数据分析

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摘要

This paper presents the implementation of a method for nonlinear, nonstationary data processing, namely the Hilbert-Huang transform (HHT) in traditional vibration-based approaches to characterizing structural damage and shows the frequency signature of local structural damage in nonstationary vibration recordings. In particular, following the review of traditional approaches to characterizing structural damage from nonstationary vibration recordings, this study first offers the justifications of the HHT as an alternative and complementary data process in addressing the nonstationarity of the vibration. With the use of recordings from controlled field vibration tests of substructures in the Trinity River Relief Bridge in Texas in its intact, minor- and severe-damage pile states, this study then shows that the HHT-based approach can single out some natural frequencies of the structure from a mixed frequency content in recordings that also contain the time-dependent excitation and noise frequencies. Subsequently, this study exposes that the frequency downshift for the damaged pile relative to the undamaged one is an indicative index for the damage extent. The above results are also validated by an ANSYS model-based analysis. Finally, a comprehensive HHT-based characterization of structural damage is discussed, and the potential use for cost-effective, efficient structural damage diagnosis procedures and health-monitoring systems is provided. (c) 2004 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种用于非线性非平稳数据处理的方法的实现,即传统的基于振动的方法中的希尔伯特-黄氏变换(HHT)来表征结构损伤,并显示了非平稳振动记录中局部结构损伤的频率特征。特别是,在回顾了表征非平稳振动记录的结构损伤的传统方法之后,本研究首先提供了HHT作为解决振动非平稳性的替代和补充数据处理的理由。利用得克萨斯州三位一体河泄洪桥在其完好,轻度和重度损坏的桩状态下的子结构的受控场振动测试的记录,该研究随后表明,基于HHT的方法可以分离出某些自然频率。录音中混合频率成分的结构,其中还包含随时间变化的激励和噪声频率。随后,这项研究表明,相对于未损坏的桩,受损桩的频率降档是损伤程度的指标。以上结果也通过基于ANSYS模型的分析得到了验证。最后,讨论了基于HHT的结构损伤的综合表征,并提供了具有成本效益,有效的结构损伤诊断程序和健康监测系统的潜在用途。 (c)2004 Elsevier Ltd.保留所有权利。

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