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Numerical study on electrohydrodynamic flow and fine-particle collection efficiency in a spike electrode-plate electrostatic precipitator

机译:穗电极板静电沉淀器中电液动力流动和微粒收集效率的数值研究

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In this work, a numerical study on the electrohydrodynamic secondary flow and transport of fine particles has been carried out based on spike electrode-plate electrostatic precipitator (ESP). The effect of the inlet flow velocity, negatively applied voltage, and position of spike tip on airflow streamlines distribution are analysed in detail. The electrohydrodynamic (EHD) secondary flow patterns and particle collection efficiencies are examined for three different corona discharge electrode configurations, the spike tip locates at i) upstream, ii) downstream and iii) at both sides of the channel. The results show a complex and turbulent flow structure in the ESP with the spiked electrode. A pair of vortices is formed in the vicinity of the spiked electrode with the tip of the upstream-directed spikes, driving the main airflow toward the collecting plates and improving the collection efficiency of particles. Compared to the EHD secondary flow streamlines in the spike-plate type ESP one can deduce that the stronger vortices occur at higher Ehd/Re-2 ratios. Furthermore, the distribution of deposited particles with the aforementioned spike tip locations reflected the real condition of particle deposition. The results help to improve the structural optimization of the spike-type ESP. (C) 2019 Elsevier B.V. All rights reserved.
机译:在这项工作中,基于尖峰电极板静电除尘器(ESP)进行了对电液动力学二次流动和细颗粒的传输的数值研究。详细地分析了入口流速,负施加电压和尖端尖端对气流的影响的影响。电流动力学(EHD)二次流动模式和颗粒收集效率在通道的两侧检查了三个不同的电晕放电电极配置,在I)上游,ii)下游和III)。结果表明,具有尖刺电极的据说中的复杂和湍流结构。在具有上游定向尖端的尖端的尖端的尖端附近形成一对涡流,使主气流朝向收集板驱动并提高颗粒的收集效率。与尖峰板型中的EHD二次流动流线相比,ESP中的流线可以推断出更强的涡流以较高的EHD / RE-2比率发生。此外,具有上述尖端位置的沉积颗粒的分布反映了颗粒沉积的真实条件。结果有助于提高尖峰型ESP的结构优化。 (c)2019年Elsevier B.V.保留所有权利。

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