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An investigation of the detection of acoustic sand signals from the flow of solid particles in pipelines

机译:管道中固体粒子流动检测声学砂信号的研究

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摘要

The development of a simple, reliable and low-cost on-line particle detection method for liquid flows has been recognized as a global challenge in the chemical engineering industry. To overcome the existing limitations in the detection of sand particles in water-gas pipe flows, a non-invasive acoustic method with two special acoustic devices (installed separately on a straight pipe and a bend pipe) for the detection of miniscule sand particles was evaluated. A series of detection methods, namely, time-frequency analysis, mutual-coherence analysis, and multi-band elimination filter methods, were developed to extract weak sand features submerged in the background noise of strong flows. Verification experiments were conducted to record acoustic signals from sand-carrying flows, thereby revealing five sand characteristic frequency bands in a water-gas bubbly flow: 20.59-21.31 kHz, 24.10-24.82 kHz, 27.64-28.36 kHz, 31.10-31.84 kHz, and 34.61-35.33 kHz. Additionally, good agreement was found between the sand concentration (0.06-0.24 wt.%) with a particle size of 150 mu m and the acoustic sand root mean square (RMS) level within the discovered sand frequency multi bands, verifying the use of the proposed acoustic detection devices and the corresponding weak sand identification method. This study provides the foundation for the future detection of solids in more complex multiphase flows. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:液体流动简单,可靠和低成本的在线粒子检测方法的开发被认为是化学工程行业的全球挑战。为了克服在水 - 气管流动中检测砂颗粒的现有限制,评价了一种用于检测微型砂颗粒的两种特殊声学装置(分别安装在直管和弯管上)的非侵入式声学方法。开发了一系列检测方法,即时间频率分析,互相相干分析和多频段消除滤波方法,以提取淹没在强流量的背景噪声中的弱砂特征。进行验证实验以记录来自砂砂流的声学信号,从而揭示了水 - 气泡流动的五个砂特征频段:20.59-21.31 kHz,24.10-24.82 kHz,27.64-28.36 kHz,31.10-31.84 kHz和34.61-35.33 kHz。另外,在发现的沙频多频带内的粒度为150μm和声学砂根均线(RMS)水平的粒度(0.06-0.24重量%)之间发现了良好的一致性。验证使用的使用提出的声学检测装置和相应的弱砂识别方法。本研究为未来检测在更复杂的多相流动中的未来检测的基础。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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