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Measurement of Flow Characteristics in a Bubbling Fluidized Bed Using Electrostatic Sensor Arrays

机译:使用静电传感器阵列测量鼓泡流化床中的流动特性

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摘要

Fluidized beds are widely applied in a range of industrial processes. In order to maintain the efficient operation of a fluidized bed, the flow parameters in the bed should be monitored continuously. In this paper, electrostatic sensor arrays are used to measure the flow characteristics in a bubbling fluidized bed. In order to investigate the electrostatic charge distribution and the flow dynamics of solid particles in the dense region, time and frequency domain analysis of the electrostatic signals is conducted. In addition, the correlation velocities and weighted average velocity of Geldart A particles in the dense and transit regions are calculated, and the flow dynamics of Geldart A and D particles in the dense and transit regions are compared. Finally, the influence of liquid antistatic agents on the performance of the electrostatic sensor array is investigated. According to the experimental results, it is proved that the flow characteristics in the dense and transit regions of a bubbling fluidized bed can be measured using electrostatic sensor arrays.
机译:流化床广泛应用于一系列工业过程中。为了维持流化床的有效运行,应连续监测床中的流动参数。在本文中,静电传感器阵列用于测量鼓泡流化床中的流动特性。为了研究稠密区域中固体颗粒的静电荷分布和流动动力学,对静电信号进行了时域和频域分析。此外,计算了稠密和过渡区域中的Geldart A颗粒的相关速度和加权平均速度,并比较了稠密和过渡区域中的Geldart A和D颗粒的流动动力学。最后,研究了液体抗静电剂对静电传感器阵列性能的影响。根据实验结果证明,可以使用静电传感器阵列测量鼓泡流化床的稠密和过渡区域的流动特性。

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