首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Monitoring of scaling in dilute phase pneumatic conveying systems using non-intrusive acoustic sensors - A feasibility study
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Monitoring of scaling in dilute phase pneumatic conveying systems using non-intrusive acoustic sensors - A feasibility study

机译:利用非侵入式声学传感器监测稀膜气动输送系统的缩放 - 可行性研究

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摘要

Scale formation in pneumatic conveying systems is a major industrial challenge. The underlying scale formation mechanisms can be intricate as they often involve a combination of several mutually enhancing binding forces and can be affected by a number of different factors. A non-intrusive monitoring technique capable of measuring scale growth would be a valuable tool to investigate different scaling mechanisms. In this study, the feasibility of an active acoustic sensor technique for monitoring of scale growth in a pneumatic conveying system is evaluated. Tests are performed in a pilot scale pneumatic conveying system transporting sand in dilute phase. The acoustic sensors conducts measurements on test pipes which are coated with a primer/ powder mixture, one layer after the other, to simulate scale progression. Reference measurements of the coating layer thickness in the test pipes are obtained by a laser imaging technique for each added coating layer. A multivariate method is used to calibrate prediction models of the scale thickness using acoustic measurements as independent variables and the reference measurements as the dependent variable. Results show that the active monitoring method is capable of monitoring scale growth in pneumatic conveying systems and that dilute phase conveying of sand does not affect the precision of predictions made by the method. (C) 2019 Published by Elsevier B.V. on behalf of The Society of Powder Technology Japan. All rights reserved.
机译:气动输送系统中的规模形成是一个主要的工业挑战。底层形成机制可以复杂,因为它们通常涉及几种相互增强的结合力的组合,并且可能受到许多不同因素的影响。一种能够测量规模增长的非侵入式监控技术将是调查不同缩放机制的有价值的工具。在该研究中,评估了用于监测气动输送系统中规模生长的有源声学传感器技术的可行性。在稀阶段的试验尺度气动输送系统中进行测试。声学传感器对测试管进行测量,该试管涂有底漆/粉末混合物,另一层之后,以模拟比例进展。通过针对每个添加的涂层的激光成像技术获得测试管中的涂层厚度的参考测量。多变量方法用于使用声学测量作为独立变量和作为因变量的参考测量来校准比例厚度的预测模型。结果表明,主动监测方法能够监测气动输送系统中的规模生长,并且砂的稀释相输送不会影响方法的精度。 (c)2019年由Elsevier B.V发布。代表日本粉末科技会。版权所有。

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