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Local wave propagation analysis in concrete-filled steel tube with spectral element method using absorbing layers - Part I: Approach and validation

机译:吸收层的频谱单元法分析钢管混凝土中的局部波传播-第一部分:方法与验证

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Concrete-Filled Steel Tube (CFST) members have been widely employed in high-rise buildings or long-span bridges as vertical or axial load-carrying components and the development of efficient interface debonding detection approach for CFST members has been a common concern. In recent years, wave propagation measurement based interface debonding defect approaches have shown their efficiency and efficient numerical simulation techniques on elastic wave propagation within CFST members are critical to understand the mechanism of the approaches. In this study, in order to efficiently investigate the effect of interface debonding on local elastic wave propagation within CFST members, a two-dimensional (2D) time domain spectral element method (SEM), where absorbing layers with increasing damping (ALID) is introduced to attenuate the wave reflection effect on boundaries, is developed at first. Then, the developed 2D time domain SEM with ALID is employed to simulate the wave propagation in a steel plate and an isotropic panel mimicking concrete core in CFST members. The effect of ALID on the attenuation of reflected Lamb waves in the steel plate and the bulk waves in the isotropic panel is validated. Finally, the local wave propagation in a substructure of the CFST model is numerically studied with the proposed 2D SEM with ALID. The dimensions and parameters of the ALID are determined and their effect on eliminating the reflected waves within the substructure excited by a single point load and a surface-mounted PZT patch actuator is demonstrated, respectively. The developed 2D time domain SEM with ALID provides efficient tool to simulate the local wave propagation in CFST specimens with interface debonding defects for understanding the mechanism of local stress wave measurement based interface debonding detection method to be discussed in the accompanying paper.
机译:钢管混凝土(CFST)构件已广泛用于高层建筑或大跨度桥梁中,作为垂直或轴向承载构件,因此对于CFST构件开发有效的界面剥离检测方法一直是人们普遍关注的问题。近年来,基于波传播测量的界面剥离缺陷方法已经证明了它们的效率,而有效的数值模拟技术对CFST构件内弹性波的传播对于理解该方法的机理至关重要。在这项研究中,为了有效地研究界面剥离对CFST构件内局部弹性波传播的影响,提出了一种二维(2D)时域频谱元素方法(SEM),其中引入了具有增加阻尼的吸收层(ALID)首先,开发了一种衰减波在边界上的反射效果的方法。然后,利用已开发的带有ALID的二维时域SEM来模拟在CFST构件中模拟混凝土芯的钢板和各向同性面板中的波传播。验证了ALID对钢板中反射Lamb波和各向同性面板中体波的衰减的影响。最后,利用拟议的带有ALID的二维SEM对CFST模型子结构中的局部波传播进行了数值研究。确定了ALID的尺寸和参数,并分别说明了它们对消除由单点负载和表面安装的PZT贴片激励器激励的子结构内的反射波的影响。开发的带有ALID的二维时域SEM提供了一种有效的工具,可以模拟具有界面剥离缺陷的CFST标本中的局部波传播,从而了解将在本文中讨论的基于局部应力波测量的界面剥离检测方法的机理。

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