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Partial Blockage Detection in Pipelines by Frequency Response Method

机译:频率响应法检测管道局部堵塞

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摘要

A new technique is presented utilizing the frequency response for the detection of partial blockages in a pipeline. In the system frequency response, a partial blockage increases the amplitude of the pressure oscillations at even harmonics. Such an increase in amplitude has an oscillatory pattern, the frequency and amplitude of which may be used to predict the location and size of a partial blockage. In this technique, the pressure transient history at only one location is sufficient, and the history of the transient in the pipe prior to blockage is not needed, which is an advantage over a number of other available techniques, in addition to being simpler to use. It is shown that the technique successfully detects the location of a blockage in a number of simple systems with blockage size as small as 10%. The technique is verified by comparing the computed results with those computed by the method of characteristics and with measurements from simple laboratory setups. A number of practical issues and limitations for field implementations are discussed.
机译:提出了一种利用频率响应检测管道中局部堵塞的新技术。在系统频率响应中,部分阻塞会增加偶次谐波下压力振荡的幅度。振幅的这种增加具有振荡模式,其频率和振幅可用于预测部分阻塞的位置和大小。在这种技术中,仅在一个位置的压力瞬变历史就足够了,并且不需要在阻塞之前在管道中进行瞬变历史,这与许多其他可用技术相比具有优势,而且使用起来更简单。结果表明,该技术成功地在许多阻塞尺寸小至10%的简单系统中检测到阻塞的位置。通过将计算结果与通过特征方法计算的结果以及简单实验室设置的测量结果进行比较,从而验证了该技术的有效性。讨论了许多实际问题和现场实施的局限性。

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