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低频超声导波在检测管道结垢中的应用研究

Characterization of the Use of Low Frequency Ultrasonic Guided Waves to Detect Fouling Deposition in Pipelines.

机构信息

Brunel University London, Kingston Lane, Uxbridge, Middlesex UB8 3PH, UK.

出版信息

Sensors (Basel). 2018 Jul 2;18(7):2122. doi: 10.3390/s18072122.

Abstract

The accumulation of fouling within a structure is a well-known and costly problem across many industries. The build-up is dependent on the environmental conditions surrounding the fouled structure. Many attempts have been made to detect fouling accumulation in critical engineering structures and to optimize the application of power ultrasonic fouling removal procedures, i.e., flow monitoring, ultrasonic guided waves and thermal imaging. In recent years, the use of ultrasonic guided waves has been identified as a promising technology to detect fouling deposition/growth. This technology also has the capability to assess structural health; an added value to the industry. The use of ultrasonic guided waves for structural health monitoring is established but fouling detection using ultrasonic guided waves is still in its infancy. The present study focuses on the characterization of fouling detection using ultrasonic guided waves. A 6.2-m long 6-inch schedule 40 carbon steel pipe has been used to study the effect of (Calcite) fouling on ultrasonic guided wave propagation within the structure. Parameters considered include frequency selection, number of cycles and dispersion at incremental fouling thickness. According to the studied conditions, a 0.5 dB/m drop in signal amplitude occurs for a fouling deposition of 1 mm. The findings demonstrate the potential to detect fouling build-up in lengthy pipes and to quantify its thickness by the reduction in amplitude found from further numerical investigation. This variable can be exploited to optimize the power ultrasonic fouling removal procedure.

摘要

在许多行业中,结构内的污垢积累是一个众所周知且代价高昂的问题。这种积累取决于受污染结构周围的环境条件。许多人试图检测关键工程结构中的污垢积累,并优化功率超声除垢程序的应用,例如流量监测、超声导波和热成像。近年来,超声导波已被确定为检测污垢沉积/生长的一种有前途的技术。该技术还具有评估结构健康状况的能力;这是对该行业的附加值。超声导波在结构健康监测中的应用已经确立,但超声导波检测污垢仍处于起步阶段。本研究重点研究了超声导波检测污垢的特性。使用一根 6.2 米长、6 英寸的 40 号碳钢管,研究了(方解石)污垢对结构内超声导波传播的影响。考虑的参数包括频率选择、循环次数和在增量污垢厚度下的频散。根据研究条件,当污垢沉积为 1 毫米时,信号幅度下降 0.5 dB/m。研究结果表明,有可能检测到长管道中的污垢积聚,并通过进一步的数值研究发现幅度降低来量化其厚度。这个变量可以被利用来优化功率超声除垢程序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d923/6068678/692f0644dff5/sensors-18-02122-g001.jpg

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