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Frequency analysis of ultrasonic wave propagation on metal pipe in ultrasonic tomography system

机译:超声波层析成像系统中超声波在金属管上传播的频率分析

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摘要

Purpose – Since the importance role of ultrasonic tomography (UT) in industry, especially in oil industry, to produce noninvasive and nondestructive plane images, research on UT system with a metal pipe conveyor is investigated. The produced cross-sectional images are used for detecting the concentration of solid and liquid mixture inside the pipe, noninvasively. In practice, due to application of metal pipes as the conveyor of oil mixture so the capability of manufacturing an UT system with a metal pipe is investigated in this paper. The paper aims to discuss these issues. Design/methodology/approach – Finite element software (COMSOL Multiphysics 3.5) for visualizing the structure of pipe with mounted sensors on the periphery of the pipe is used. The manner of ultrasonic wave propagation on different layers on various frequencies and finding the time of flight for transmission mode signal and lamb mode signal are achieved by the means of done simulations. Finding the proper ultrasonic sensor base on its efficiency is the main step of designing an UT system. This is done by estimating the resonance frequency of sensor due to the manner of ultrasonic wave propagation in different frequencies shown in simulation results. Findings – Due to simulation results, lamb wave is a permanent propagation mode of ultrasonic wave which makes interference in measuring process of straight path signal and it is impossible to remove. Relief of the mentioned problem finding an optimum frequency to decrease the affection of lamb wave in detecting point. Optimum frequency of ultrasonic wave to satisfy the objective is 45 kHz which is measured by considering of mathematic of ultrasonic wave propagation in different layers. The reaching time of straight path signal and lamb wave signal in opposite sensor as the receiver are 5.5 and 4.6ms, respectively. Originality/value – This investigation is the first step to perform the UT in a noninvasive method to produce the cross-sectional images of metal pipe. Due to the wide application of metal pipes as the conveyor of the liquids/gases, metal pipe for the UT application is studied in this research.
机译:目的–由于超声层析成像(UT)在工业中(尤其是在石油工业中)对于产生无创和无损平面图像的重要作用,因此对使用金属管道输送机的UT系统进行了研究。产生的横截面图像用于无创地检测管道内部的固体和液体混合物的浓度。在实践中,由于应用金属管作为油混合物的输送机,因此本文研究了使用金属管制造UT系统的能力。本文旨在讨论这些问题。设计/方法/方法-使用有限元软件(COMSOL Multiphysics 3.5)可视化管道结构,并在管道外围安装传感器。通过完成的仿真,可以实现超声波在各种频率下在不同层上的传播方式以及找到传输模式信号和羔羊模式信号的飞行时间的方式。根据效率来寻找合适的超声波传感器是设计UT系统的主要步骤。这是通过估算仿真结果中所示超声波在不同频率下的传播方式引起的传感器共振频率来完成的。发现–由于仿真结果,兰姆波是超声波的永久传播模式,这会干扰直线信号的测量过程,并且无法消除。寻找最佳频率以减少兰姆波对检测点的影响的上述问题的缓解。满足目标的超声波的最佳频率是45 kHz,这是通过考虑超声波在不同层中传播的数学方法测得的。与接收器相对的传感器中直线路径信号和兰姆波信号的到达时间分别为5.5ms和4.6ms。原创性/价值–这项研究是采用非侵入性方法执行UT以生成金属管横截面图像的第一步。由于金属管作为液体/气体输送机的广泛应用,本研究对用于UT的金属管进行了研究。

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