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A novel approach based on viscoelastic parameters for bridge health monitoring: A case study of Saigon bridge in Ho Chi Minn City - Vietnam

机译:基于粘弹性参数的桥梁健康监测新方法:以越南胡志明市西贡大桥为例

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摘要

This article addresses a novel approach to diagnose a structure's damage based on changes in the mechanical parameters of materials. Firstly, we integrate a viscoelastic model into structural damage detection and diagnosis. Accordingly, this model defines materials' mechanical characteristics via two parameters namely elastic module (£) and viscous coefficient (C_0). While Hooke's model is linear, the viscoelastic is non-linear, and therefore, it reflects real situation more precisely. Secondly, we exploit amplitude and frequency of vibration signals and determines their relation with mechanical parameters in detecting structural changes. Based on theoretical analysis and experimental results, our study reveals more effective and general than previous ones. The simultaneous monitoring of structural change using different parameters allow the research to collect more appropriate data compared to previous studies. The results derived from this research were adopted in monitoring health of Saigon bridge over the period of 15 years. Via more than 100 sensors permanently attached to the bridge, the measured signals enabled the evaluation of the structure's operation status. This experimental result shows suitability among the proposed theoretical approaches, and thereby forms a basis to forecast damages of complex structures.
机译:本文介绍了一种基于材料的机械参数变化来诊断结构损坏的新颖方法。首先,我们将粘弹性模型集成到结构损伤的检测和诊断中。因此,该模型通过两个参数即弹性模量(£)和粘滞系数(C_0)定义了材料的机械特性。尽管胡克模型是线性的,但粘弹性是非线性的,因此,它可以更精确地反映实际情况。其次,我们利用振动信号的振幅和频率,并在检测结构变化时确定它们与机械参数的关系。基于理论分析和实验结果,我们的研究表明比以前的研究更有效和更普遍。与以前的研究相比,使用不同的参数同时监视结构变化可以使研究收集更合适的数据。这项研究得出的结果被用于监测西贡大桥15年的健康状况。通过永久固定在桥上的100多个传感器,测量的信号可以评估结构的运行状态。实验结果表明了所提出理论方法的适用性,从而为预测复杂结构的破坏提供了基础。

著录项

  • 来源
    《Mechanical systems and signal processing》 |2020年第7期|106728.1-106728.17|共17页
  • 作者单位

    Ho Chi Minh City Department of Transportation Ho Chi Minh City Met Nam;

    Laboratory of Applied Mechanics (LAM) Ho Chi Minh City University of Technology HCMUT Ho Chi Minh City Viet Nam Ho Chi Minh National University Ho Chi Minh City Viet Nam;

    Laboratory of Applied Mechanics (LAM) Ho Chi Minh City University of Technology HCMUT Ho Chi Minh City Viet Nam;

    CIRTECH Institute Ho Chi Minh City University of Technology (HUTECH) Ho Chi Minh City Viet Nam Department of Architectural Engineering Sejong University 209 Neungdong-ro Gwangjin-gu Seoul 05006 Republic of Korea;

    Ho Chi Minh National University Ho Chi Minh City Viet Nam CIRTECH Institute Ho Chi Minh City University of Technology (HUTECH) Ho Chi Minh City Viet Nam;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Vibration; Bridge beam; State monitoring; Viscoelastic model;

    机译:振动;桥梁状态监测;粘弹性模型;

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