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Establishing a baseline damage index for reliable damage detection: Full scale validation.

机译:建立基准损伤指数以进行可靠的损伤检测:全面验证。

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摘要

There is a need to develop effective, fast, automatic and cost-effective structural health monitoring system in the near future to assist in managing our aging infrastructure. The concept of damage is not meaningful without a comparison between two different states of the system, one of which is assumed to represent the initial, and often undamaged state. In general, the modal properties estimated from the multiple sets of data from a real structure show variation in its estimates due to ambient noise, environmental variation and nonlinearities. Hence, it is important to differentiate the change in properties due to damage and environmental variables to demonstrate the robustness of the damage detection method. A drawback of most damage detection methods is that when two sets of acceptable information is passed to a global damage detection algorithm, output damage indices for the structure is obtained without providing information about the acceptability of the results obtained. To detect damage reliably in the presence of these variations, a baseline damage index needs to be established to quantify the change in the damage index due to noise in the structure. It is demonstrated that for a certain noise level in the data, when the damage indices are above a baseline damage index, the damage localization results can be trusted.;A graphical representation is used to provide a background for the proposed method. Two damage detection methods: the Angle-between-String-and-Horizontal (ASH) flexibility method and Axial Strain (AS) flexibility method are used to demonstrate the baseline damage index concept. Numerical simulation of a one dimensional beam model and three dimensional truss is used to demonstrate the development of baseline damage index and demonstrate the method. A numerical benchmarking of damage detection method is also proposed using the same concept.;Tests conducted on a 17.5-m long experimentally full-scale highway sign support truss were used to demonstrate the effectiveness of the proposed method. A series of detailed tests was used to fully characterize the vibration response of the truss in three orthogonal directions at 44 locations on the structure. Multiple input excitations such as white noise excitation using a shaker to simulate ambient vibration and hammer excitation in multiple directions were used to excite the structure. Five damage cases are studied that replicate scenarios observed during inspection of trusses in the field. A multiple damage case has also been performed in the study. The results demonstrated successfully the applicability of the baseline damage index for reliable damage detection.
机译:有必要在不久的将来开发有效,快速,自动且具有成本效益的结构健康监测系统,以协助管理我们老化的基础设施。如果不对系统的两个不同状态进行比较,那么损坏的概念就没有意义,假设其中两个状态代表初始状态,并且通常是未损坏状态。通常,从真实结构的多组数据估计的模态特性会由于环境噪声,环境变化和非线性而显示出其估计值的变化。因此,重要的是区分由于损坏和环境变量引起的特性变化,以证明损坏检测方法的鲁棒性。大多数损坏检测方法的缺点是,当将两组可接受的信息传递给全局损坏检测算法时,在不提供有关所获得结果的可接受性的信息的情况下,获得了结构的输出损坏指数。为了在存在这些变化的情况下可靠地检测损坏,需要建立基线损坏指数以量化由于结构中的噪声导致的损坏指数的变化。结果表明,对于数据中的一定噪声水平,当损伤指数高于基线损伤指数时,损伤定位结果是可以信赖的。图形表示法为提出的方法提供了背景。两种损伤检测方法:线与水平角之间的挠度方法(ASH)和轴向应变(AS)挠度方法用于说明基线损伤指数的概念。利用一维梁模型和三维桁架的数值模拟来证明基线损伤指数的发展并证明该方法。还使用相同的概念提出了一种损伤检测方法的数值基准。;在17.5 m长的实验性全尺寸高速公路标志支撑桁架上进行的测试被证明了该方法的有效性。使用一系列详细测试来全面表征桁架在结构上44个位置的三个正交方向上的振动响应。使用多个输入激励(例如使用振动器模拟环境振动的白噪声激励)和多个方向的锤子激励来激发结构。研究了五个损坏案例,它们复制了在现场检查桁架时观察到的场景。该研究中还进行了多次破坏案件。结果成功地证明了基线损伤指数对于可靠的损伤检测的适用性。

著录项

  • 作者

    Krishnan, Sriram Sivaram.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Mechanical.;Engineering Civil.
  • 学位 M.S.M.E.
  • 年度 2012
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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