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Novel vibration structural health monitoring technology for deep foundation piles by non-stationary higher order frequency response function

机译:非平稳高阶频率响应函数的深基桩振动结构健康监测新技术

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SummaryDamage in the precast concrete piles occurs mostly during installation. The wave propagation‐based nondestructive testing (NDT) is commonly used to estimate the effective length of the pile after installation and to detect pile damage. However, information extracted from this type of diagnosis is limited and subjective. Whereas, the vibration‐based NDT could provide a comprehensive automatic pile health diagnosis tool. In this paper, a new higher order vibration‐based health diagnosis technology, which utilizes a shaker to generate sweep‐sine excitation and an adaptive nonlinear non‐stationary higher order spectral analysis, is introduced for foundation piles. This research describes two different diagnostic technologies, namely, the advanced nonlinear non‐stationary chirp Fourier bicoherence (CFB) technology and the novel nonlinear non‐stationary frequency response function of the CFB (FRF‐CFB) technology. The CFB is a technology which is capable of quantifying the amplitude and phase coupling between harmonics of pile resonance oscillations caused by a damage. However, in practices, the amplitude and phase coupling between harmonics of pile resonance oscillations may be caused also due to the phase‐coupled harmonics of an interference imposed by an excitation source (e.g., shaker). Therefore, the novel diagnosis technology, FRF‐CFB, which detects nonlinearity caused solely by a structural damage, is proposed and implemented for real‐scale precast concrete piles. It is found that the FRF‐CFB technology successfully identifies the damaged piles. Finally, the diagnosis based on the conventional pile integrity testing, conducted on the same piles, is presented for comparisons with the FRF‐CFB technology and with the CFB technology.
机译:总结预制混凝土桩中的损坏主要发生在安装过程中。基于波传播的无损检测(NDT)通常用于估计安装后桩的有效长度并检测桩的损坏。但是,从这种类型的诊断中提取的信息是有限且主观的。鉴于基于振动的NDT可以提供一种全面的自动桩健康诊断工具。本文针对基础桩引入了一种新的基于振动的高阶健康诊断技术,该技术利用振动器产生扫描正弦激励和自适应非线性非平稳高阶谱分析。这项研究描述了两种不同的诊断技术,即先进的非线性非平稳线性调频傅里叶双相干(CFB)技术和CFB的新型非线性非平稳频率响应函数(FRF-CFB)。 CFB是一种能够量化由损坏引起的桩共振振荡的谐波之间的幅度和相位耦合的技术。但是,实际上,由于激励源(例如振动器)施加的干扰的相位耦合谐波也可能引起桩共振振荡的谐波之间的振幅和相位耦合。因此,提出并实施了一种新颖的诊断技术FRF-CFB,该技术可以检测仅由结构损坏引起的非线性,并用于实际规模的预制混凝土桩。发现FRF-CFB技术成功地识别了损坏的桩。最后,提出了基于常规桩完整性测试的诊断,该测试是在相同桩上进行的,以便与FRF-CFB技术和CFB技术进行比较。

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