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Effects of moisture content on electrostatic sensing based mass flow measurement of pneumatically conveyed particles

机译:水分含量对基于静电感应的气力输送颗粒质量流量测量的影响

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摘要

Mass flow rate measurement of pneumatically conveyed particles is desirable for the optimal control of many industrial processes. The unpredicted variation of moisture content in particles affects the accuracy of mass flow measurement of particles in enclosed pipelines using electrostatic electrodes. In this study, the characteristics of measured electrostatic signals from particle flow under different flow conditions are analysed to study the effect of moisture content on the mass flow rate measurement. The measurement principle of ring-shaped electrostatic electrodes, the effects of moisture content on electrification of solid particles, and the experimental setup used in the study are presented. Two types of electrostatic electrodes with different axial widths and structure are adopted to measure the electrostatic signals of nonporous glass beads and porous activated carbon powder on the vertical pipeline of a 74 mm bore gas–solid two-phase flow test rig under various moisture content, mass flow rate and conveying velocity conditions. The experimental results indicate that the amplitude and frequency characteristics of the electrostatic signals change with the moisture content. The deviation of mass flow measurement that caused by the variation of moisture content is analysed, and a recalibration process is demonstrated to be effective for the improvement of measurement accuracy.
机译:为了对许多工业过程进行最佳控制,需要测量气动输送颗粒的质量流率。颗粒中水分的意外变化会影响使用静电电极的封闭管道中颗粒质量流量测量的准确性。在这项研究中,分析了在不同流动条件下从颗粒流测得的静电信号的特性,以研究水分含量对质量流量测量的影响。介绍了环形静电电极的测量原理,水分含量对固体颗粒带电的影响以及本研究中使用的实验装置。采用两种轴向宽度和结构不同的静电电极,在不同水分含量的情况下,测量74毫米口径气固两相流动试验台垂直管道上无孔玻璃珠和多孔活性炭粉末的静电信号,质量流量和输送速度条件。实验结果表明,静电信号的幅度和频率特性随水分含量而变化。分析了由水分含量变化引起的质量流量测量的偏差,并证明了重新校准过程对于提高测量精度是有效的。

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