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Numerical Simulation of the Electrohydrodynamic Flow in a Single Wire-Plate Electrostatic Precipitator

机译:单线板式电除尘器中电动流体流动的数值模拟

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In this paper, the electrohydrodynamic (EHD) flow in a single wire-plate electrostatic precipitator has been analyzed numerically by employing a hybrid Finite-Element Method–Method of Characteristics numerical algorithm and the commercial computational fluid dynamic software FLUENT6.2. Parameters defining both the electric and the flow fields were predicted. The interaction between the electric and the flow fields has been discussed by adopting the proposed two-way coupling algorithm. With the help of the dimensionless analysis, an entire flow regime map has been developed for different Reynolds (Re) and EHD numbers. It was found that, at very low Re ( $≪ ,$15) and high EHD ( $>,$2000) (based on the corona wire) numbers, the EHD flow dominates in the channel; as Re increases, the significance of the EHD wakes gradually decreases; at a higher Re ( $>$ 50) or a lower EHD ( $≪$ 500) numbers, the EHD flow becomes the near-corona-wire phenomena, and the main flow dominates the channel. The possible influence of the EHD flow on the particle-collection efficiency was also discussed.
机译:在本文中,采用混合有限元方法-特征方法数值算法和商业计算流体动力学软件FLUENT6.2,对单线板式静电除尘器中的电动流体(EHD)流动进行了数值分析。预测了定义电场和流场的参数。通过采用提出的双向耦合算法,讨论了电场与流场之间的相互作用。借助无量纲分析,已针对不同的雷诺(Re)和EHD编号开发了完整的流态图。结果发现,在非常低的Re($≪,$ 15)和较高的EHD($>,$ 2000)(基于电晕丝)数量下,EHD流量在通道中占主导地位。随着Re的增加,EHD唤醒的重要性逐渐降低;在较高的Re($> $ 50)或较低的EHD($≪ $ 500)数值下,EHD流变为近日冕线现象,而主流占主导地位。还讨论了EHD流量对颗粒收集效率的可能影响。

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