首页> 外文会议>ASME international pipeline conference;IPC2010 >EXCITATION OF GUIDED WAVES IN OIL STORAGE TANK FLOOR AND VERTICl WALL BY EDGE-AND WALL-MOUNTED TRANSDUCERS
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EXCITATION OF GUIDED WAVES IN OIL STORAGE TANK FLOOR AND VERTICl WALL BY EDGE-AND WALL-MOUNTED TRANSDUCERS

机译:边缘和壁装式传感器激励储油罐地板和垂直壁中的导向波

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Oil storage tanks are crucial components in the petrochemical industry for transportation and storage. Corrosion of the tank floor and vertical walls is one of the most important safety concerns. In-situ inspection of the tank floor and walls with ultrasonic guided wave technique by edge- and wall-mounted transducers is still an active research area nowadays.A great deal of research has been conducted in detecting the defect of plate-like structures using Lamb waves. This application has been motivated by the fact that the Lamb wave velocity is the function of frequency and structural geometry (thickness), also the Lamb waves can propagate with low attenuation for long distance in plate structure. However, the complexity due to the existence of multiple Lamb wave modes weakens its applicability. Lamb waves are typically excited by transducers mounted on the surface of the inspected plates. Higher order modes are generated if the frequency-thickness product exceeds a certain threshold value that is dependent on the material of the plates. Low frequency guided waves can reduce this complication as only a small number of wave modes are generated. So operation with low frequency guided waves is usually recommended, but it encounters a problem that the resolution gets degraded hence small defects (compared to the wavelength) are difficult to detect. Our investigation considers the generation of guided waves in tank floor and vertical wall by edge excitation and wall-mounted excitation, respectively. Only when there is no access to the edge of the vertical wall, the wall-mounted excitation (surface excitation) is used. When the frequency-thickness product issmall Lamb waves are generated, otherwise, longitudinal waves are generated. We investigate the intermediate frequency-thickness products where a pulse train of semi-longitudinal waves is excited. The pulse train is comprised of a leading pulse and some railing pulses, which have been predicted by the acoustic theory. The transition from Lamb wave to semi-longitudinal wave is investigated. In addition, energy transport from leading pulse to trailing pulses and the interaction of these trailing pulses with defects are studied. The results revealed that the semi-longitudinal wave is a viable option for tank floor and wall defect inspection.
机译:储油罐是石化行业中运输和存储的重要组成部分。罐底和垂直壁的腐蚀是最重要的安全问题之一。如今,边缘和壁挂式换能器采用超声波导波技术对罐底和壁进行现场检查仍然是一个活跃的研究领域。 在利用兰姆波检测板状结构的缺陷方面已经进行了大量研究。兰姆波速度是频率和结构几何(厚度)的函数,因此兰伯波速度也可以以低衰减传播,从而在板状结构中长距离传播。然而,由于存在多个兰姆波模式而导致的复杂性削弱了其适用性。通常通过安装在检查板表面上的换能器激发兰姆波。如果频率厚度乘积超过某个阈值(取决于板的材料),则会生成高阶模。低频导波可以减少这种复杂性,因为只产生少量的波模。因此,通常建议使用低频导波进行操作,但是会遇到分辨率降低的问题,因此难以检测出较小的缺陷(与波长相比)。我们的研究考虑了分别通过边缘激励和壁挂激励在罐底和垂直壁中产生导波。仅当无法访问垂直壁的边缘时,才使用壁挂式激励(表面激励)。当频率厚度积为 会产生小的兰姆波,否则会产生纵波。我们研究了半纵波脉冲序列被激发的中频厚度乘积。脉冲序列由超前脉冲和一些围栏脉冲组成,这已通过声学理论进行了预测。研究了从兰姆波到半纵波的转变。此外,研究了从前导脉冲到尾随脉冲的能量传输以及这些尾随脉冲与缺陷的相互作用。结果表明,半纵向波是检查罐底和壁面缺陷的可行选择。

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