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Monitoring of particle motions in gas-solid fluidized beds by electrostatic sensors

机译:用静电传感器监测气固流化床中的颗粒运动

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摘要

Gas-solid fluidized beds are widely applied in numerous industrial processes. Particle motions significantly affect the performance of fluidized bed reactors and the characterization of particle movements is therefore important for fluidization quality monitoring and scale-up of reactors. Electrostatic charge signals in the fluidized bed contain much dynamic information on particle motions, which are poorly understood and explored. In this work, correlation velocities of Geldart B and D particles were measured, analyzed and compared by induced electrostatic sensors combined with cross-correlation method in the fluidized bed. The results indicated that the average correlation velocity of particle clouds increased and the normalized probability density distributions of correlation velocities broadened when the superficial gas velocity increased in the dense-phase region. Both upward and downward correlation velocities could be acquired in the dynamic bed level region. Under the same excess gas velocity, the average correlation velocity of Geldart D particles was significantly smaller than that of Geldart B particles, which was caused by the smaller bubble sizes caused by the dominant bubble split over coalescence and less volume of gas forming bubbles for Geldart D particles. The experimental results verified the reliability and repeatability of particle correlation velocity measurement by induced electrostatic sensors in the gas-solid fluidized bed, which provides definite potential in monitoring of particle motions.
机译:气固流化床被广泛应用于众多工业过程中。颗粒运动显着影响流化床反应器的性能,因此颗粒运动的表征对于流化质量监测和反应器规模放大至关重要。流化床中的静电荷信号包含许多关于粒子运动的动态信息,人们对此知之甚少。在这项工作中,通过感应静电传感器结合互相关方法在流化床中对Geldart B和D颗粒的相关速度进行了测量,分析和比较。结果表明,当密相区表观气体速度增加时,粒子云的平均相关速度增加,相关速度的归一化概率密度分布变宽。在动态床水平区域中,都可以获取向上和向下的相关速度。在相同的过量气体速度下,Geldart D颗粒的平均相关速度显着小于Geldart B颗粒,这是由于在合并过程中主要气泡分裂引起的较小气泡尺寸以及Geldart的气体形成气泡的体积较小D粒子。实验结果验证了气固流化床中感应静电传感器进行颗粒相关速度测量的可靠性和可重复性,这为监测颗粒运动提供了一定的潜力。

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