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The Elastic Wave Propagation in Rectangular Waveguide Structure: Determination of Dispersion Curves and Their Application in Nondestructive Techniques

机译:矩形波导结构中的弹性波传播:色散曲线的测定及其在非破坏性技术中的应用

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The use of mechanic waves for assessing structural integrity is a well-known non-destructive technique (NDT). The ultrasound applied in the guided wave in particular requires significant effort in order to understand the complexities of the propagation so as to develop new methods in damage detection, in this case, knowing the interaction between the wave propagation and the geometry of the waveguides is mandatory. In the present work, the wave propagation in rectangular steel rod is presented. In this study, the section dimensions were fixed as 5 × 15 [mm], a typical element of the flexible riser structural amour commonly used in the offshore oil industry. The studies here presented were restricted to [0, 100 KHz] frequencies. This frequency interval is in the range of commercial waveguide equipment commonly applied in ducts in NDT applications. The computation of the dispersion curves is performed by using three different methodologies: (i) analytical solutions, (ii) a method that combines analytical approaches with finite element methods (SAFE), and (iii) experimental method that extracted information from the rod using laser vibrometers and piezoelectric actuators. Finally, two applications based on the dispersion curves determined in the rectangular waveguide are presented to illustrate the possibilities of the curve dispersion knowledge related to the specific geometry in the development and application linked to NDT. The first application consists on showing the possibilities of the techniques that use a fiber grating Bragg cell (FGB) to measure the wave displacement and the second application involves the simulation of pre-fissured prismatic waveguide aimed at searching to induce three characteristic acoustic events. The model was built combining the finite element method and a version of the discrete element method.
机译:用于评估结构完整性的机械波是一种众所周知的非破坏性技术(NDT)。特别需要在引导波中施加的超声需要大量努力,以了解传播的复杂性,以便在这种情况下开发新方法,在这种情况下,知道波导和波导的几何形状之间的相互作用是强制性的。在本作工作中,提出了矩形钢棒中的波传播。在这项研究中,截面尺寸固定为5×15 [mm],是在海上石​​油工业中常用的柔性立管结构中的典型元素。这里提出的研究限于[0,100 kHz]频率。该频率间隔是在NDT应用中通常应用于管道中的商业波导设备的范围。通过使用三种不同的方法来执行色散曲线的计算:(i)分析解决方案,(ii)将分析方法与有限元方法(安全)的方法相结合,(iii)从杆中提取信息的实验方法激光振动器和压电执行器。最后,提出了基于在矩形波导中确定的色散曲线的两个应用,以说明与开发中的特定几何形状相关的曲线色散知识的可能性和链接到NDT的应用。第一申请包括示出使用光纤光栅布拉格电池(FGB)测量波位移的技术的可能性,并且第二应用涉及模拟预裂的棱镜波导,其旨在寻找诱导三个特征声学事件。该模型建立了有限元方法和离散元素方法的一个版本。

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