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On-line structural integrity monitoring and defect diagnosis of steam generators using analysis of guided acoustic waves.

机译:使用导波分析对蒸汽发生器进行结构完整性在线监测和缺陷诊断。

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摘要

Integrity monitoring and flaw diagnostics of flat beams and tubular structures was investigated in this research using guided acoustic signals. The primary objective was to study the feasibility of using imbedded sensors for monitoring steam generator and heat exchanger tubing. A piezo-sensor suite was deployed to activate and collect Lamb wave signals that propagate along metallic specimens. The dispersion curves of Lamb waves along plate and tubular structures were generated through numerical analysis. Several advanced techniques were explored to extract representative features from acoustic time series. Among them, the Hilbert-Huang transform (HHT) is a recently developed technique for the analysis of non-linear and transient signals. A moving window method was introduced to generate the local peak characters from acoustic time series, and a zooming window technique was developed to localize the structural flaws.; The dissertation presents the background of the analysis of acoustic signals acquired from piezo-electric transducers for structural defect monitoring. A comparison of the use of time-frequency techniques, including the Hilbert-Huang transform, is presented. It also presents the theoretical study of Lamb wave propagation in flat beams and tubular structures, and the need for mode separation in order to effectively perform defect diagnosis. The results of an extensive experimental study of detection, location, and isolation of structural defects in flat aluminum beams and brass tubes are presented.; The time-frequency analysis and pattern recognition techniques were combined for classifying structural defects in brass tubes. Several types of flaws in brass tubes were tested, both in the air and in water. The techniques also proved to be effective under background/process noise. A detailed theoretical analysis of Lamb wave propagation was performed and simulations were carried out using the finite element software system ABAQUS. This analytical study confirmed the behavior of the acoustic signals acquired from the experimental studies.; The results of this research showed the feasibility of on-line detection of small structural flaws by the use of transient and nonlinear acoustic signal analysis, and its implementation by the proper design of a piezo-electric transducer suite. The techniques developed in this research would be applicable to civil structures and aerospace structures.
机译:在这项研究中,使用引导声信号研究了扁平梁和管状结构的完整性监测和缺陷诊断。主要目的是研究使用嵌入式传感器监控蒸汽发生器和热交换器管道的可行性。部署了压电传感器套件来激活和收集沿金属样本传播的兰姆波信号。通过数值分析,得出了兰姆波在板状和管状结构中的色散曲线。探索了几种先进的技术来从声学时间序列中提取代表性特征。其中,希尔伯特-黄(Hilbert-Huang)变换(HHT)是最近开发的用于分析非线性和瞬态信号的技术。引入了移动窗方法,从声学时间序列中生成局部峰值特征,并开发了缩放窗技术来定位结构缺陷。本文介绍了从压电换能器获取的用于结构缺陷监测的声信号分析的背景。进行了时频技术使用的比较,包括Hilbert-Huang变换。它还提出了Lamb波在平面梁和管状结构中传播的理论研究,以及为了有效执行缺陷诊断而需要进行模式分离的需求。提出了对扁平铝梁和黄铜管中的结构缺陷进行检测,定位和隔离的广泛实验研究的结果。结合时频分析和模式识别技术对黄铜管结构缺陷进行分类。测试了黄铜管在空气和水中的几种类型的缺陷。该技术还被证明在背景/过程噪声下是有效的。对兰姆波传播进行了详细的理论分析,并使用有限元软件系统ABAQUS进行了仿真。该分析研究证实了从实验研究中获得的声信号的行为。这项研究的结果表明,通过使用瞬态和非线性声信号分析来在线检测微小的结构缺陷是可行的,并且可以通过适当设计压电换能器套件来实现。这项研究中开发的技术将适用于土木结构和航空航天结构。

著录项

  • 作者

    Lu, Baofu.;

  • 作者单位

    The University of Tennessee.;

  • 授予单位 The University of Tennessee.;
  • 学科 Engineering Nuclear.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 207 p.
  • 总页数 207
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子能技术;
  • 关键词

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