首页> 外文会议>Biennial International Pipeline Conference(IPC 2004) vol.3; 20041004-08; Calgary(CA) >Source Influence for Focusing Potential of Guided Waves in Hollow Cylinders by Using a Circumferential Phased Array
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Source Influence for Focusing Potential of Guided Waves in Hollow Cylinders by Using a Circumferential Phased Array

机译:圆周相控阵对空心圆柱中导波聚焦势的源影响

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The phased array focusing technique is being developed with the intent to inspect hundreds of feet of pipeline from a single array position. The single array position is beneficial if access to a pipe is limited, e.g. steam pipes onboard U.S. Naval ships, nuclear power plant pipes, oil and natural gas pipelines. The steam pipes have a protective coating which would ordinarily be removed and replaced for an inspection. From a single array position, ultrasonic guided waves propagate under the coating, down the length of the pipe and return information about potential defects. Focusing the ultrasonic energy at a predetermined location along the length of the pipe enhances the ability to detect defects that current state of the art inspection systems cannot. Focusing is achieved by applying excitation time delays to a multi-channel signal generation system. The excitation sources are equally spaced about the circumference of the pipe. Time delays are calculated using theoretically generated angular displacement profiles in a hollow cylinder. These theoretical displacement profiles are dependent upon excitation source influences. In this paper, the excitation source influence on focusing potential in pipe was studied. Further, focusing potential contour plots for different frequencies and distances from the excitation source were created. Based on the contour plots, sample focusing experiments were carried out.
机译:正在开发相控阵聚焦技术,旨在从单个阵列位置检查数百英尺的管道。如果对管道的访问受到限制,例如,单个阵列位置是有利的。美国海军舰船上的蒸汽管道,核电站管道,石油和天然气管道。蒸汽管具有保护涂层,通常可以将其除去并更换以进行检查。从单个阵列位置开始,超声波导波在涂层下面传播,沿着管道的长度向下传播,并返回有关潜在缺陷的信息。将超声波能量聚焦在沿着管道长度的预定位置上,可以增强检测现有技术检查系统无法检测到的缺陷的能力。通过将激励时间延迟应用于多通道信号生成系统来实现聚焦。激发源在管道的圆周上等距分布。使用理论上在空心圆柱体中生成的角位移曲线来计算时间延迟。这些理论位移曲线取决于激励源的影响。本文研究了激励源对管道聚焦电位的影响。此外,针对不同频率和距激励源的距离创建了潜在的轮廓线图。基于等高线图,进行了样品聚焦实验。

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