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Simultaneous measurements of particle charge density and bubble properties in gas-solid fluidized beds by dual-tip electrostatic probes

机译:双尖端静电探针同时测量气固流化床中的颗粒电荷密度和气泡性质

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The aim of this work was to develop a new dual-tip electrostatic probe for in-situ measurements of particle charge density and bubble properties in bubbling fluidized beds. Probes containing two retractable, vertically-aligned Lips were tested in a lab-scale two-dimensional fluidized bed operated in both single bubble injection and freely bubbling modes, with glass beads and polyethylene particles of narrow size distributions as bed materials. Different decoupling methods were proposed and employed to analyze the electrostatic signals from the probes. The estimated particle charge density and bubble rise velocity were found to follow the same trends as those measured by a Faraday cup sampling system and obtained from video images respectively, with relative errors depending on the decoupling methods and probe configurations, especially for polyethylene particles. (C) 2014 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是开发一种新的双尖端静电探针,用于现场测量鼓泡流化床中的颗粒电荷密度和气泡性质。在实验室规模的二维流化床中对包含两个可伸缩,垂直对齐的唇部的探针进行了测试,该流化床以单气泡注入和自由鼓泡两种模式操作,其中玻璃珠和窄尺寸分布的聚乙烯颗粒作为床层材料。提出了不同的去耦方法,并将其用于分析来自探针的静电信号。发现估计的粒子电荷密度和气泡上升速度遵循与通过法拉第杯采样系统测量的趋势相同的趋势,并分别从视频图像获得,相对误差取决于去耦方法和探头配置,尤其是聚乙烯粒子。 (C)2014 Elsevier Ltd.保留所有权利。

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