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管道中污泥淤积的非侵入式超声检测。

Non-invasive ultrasonic inspection of sludge accumulation in a pipe.

机构信息

Institute of Advanced Machines and Design, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul 08826, Republic of Korea.

Department of Mechanical Engineering, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul 08826, Republic of Korea.

出版信息

Ultrasonics. 2022 Feb;119:106602. doi: 10.1016/j.ultras.2021.106602. Epub 2021 Sep 29.

Abstract

Sludge accumulated inside a fluid-flowing pipe used in a chemical or semiconductor processing factory should be periodically removed to avoid flow blockage that increases undesirable pressure inside the pipe. Accordingly, it is common practice to periodically dismantle a pipe system, clean up the accumulate sludge, and reassemble. Therefore, an accurate estimation of sludge accumulation in the pipe is important to minimize the halting time of a chemical process using the system. Considering the lack of a practically efficient, non-invasive method to estimate the severity of sludge accumulation without interrupting the on-going chemical process, we propose an ultrasonic, non-invasive, real-time inspection method using a pair of ultrasonic wedge transducers installed circumferentially on the outer wall of a pipe at the same axial coordinate. To detect lowly accumulated sludge, an ultrasonic wave path from a transmitting transducer via a test pipe with accumulated sludge to a receiving transducer is carefully designed. The severity of sludge accumulation can then be determined by the amplitude of the longitudinal wave picked up by another transducer installed on the other side of the wall. We performed a series of experiments with steel and PVC pipes that are partially filled with water and sludge of different heights. The experimental results confirmed the effectiveness and practical viability of the proposed inspection method.

摘要

在化学或半导体加工厂中使用的流体输送管道内部会逐渐积累污垢,应定期清除以避免因管道内压力增加而导致的流动阻塞。因此,定期拆卸管道系统、清理积累的污垢并重新组装是常见的做法。因此,准确估计管道内的污垢积累情况对于最大限度地减少使用该系统的化学过程的停机时间非常重要。考虑到缺乏一种在不中断正在进行的化学过程的情况下,实际有效地、非侵入性地评估污垢积累严重程度的方法,我们提出了一种使用安装在管道外壁上的一对超声楔形换能器进行非侵入式、实时检测的方法,这两个换能器安装在同一轴向坐标上。为了检测低积累的污垢,精心设计了从发射换能器经由具有积累污垢的测试管道到接收换能器的超声波传播路径。然后可以通过安装在壁另一侧的另一个换能器接收的纵波幅度来确定污垢积累的严重程度。我们在部分填充水和不同高度的污垢的钢和 PVC 管道上进行了一系列实验。实验结果证实了所提出的检测方法的有效性和实际可行性。

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