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Numerical Study of the Suitable Precharger Grounded Electrode Length in Two-Stage-Type Electrostatic Precipitators

机译:两阶段式电除尘器中合适的预充电器接地电极长度的数值研究

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The two-stage-type electrostatic precipitator has been used only in limited applications because of its need to accommodate a large flow rate with its compact size. A two-stage-type electrostatic precipitator comprises a precharger and a collecting unit. The grounded electrode in the precharger is generally designed to be quite short. Previous studies on the influence of the grounded electrode length in the precharger on collection efficiency have reported that the amount of particle charge through the precharger decreases for grounded electrodes that are 20- or 80-mm long. The electric field and space charge distributions were calculated for various grounded electrode lengths using the finite-element method, where the ion density distribution was used as the space charge distribution. For a 20-mm-long grounded electrode, the electric field intensity around the high-voltage wire electrode decreased. Additionally, the electric field intensity distribution at close proximity to the grounded electrode has two additional peaks due to the edges of the electrode. With the 80-mm-long grounded electrode, the peaks of the electric field intensity distribution were outside of the high-ion-density region. These results show that the optimal grounded electrode length for particle charging is about three times the distance between the grounded electrode and the high-voltage wire electrode.
机译:由于两级型静电除尘器需要以紧凑的尺寸容纳大流量,因此仅在有限的应用中使用。两级式静电除尘器包括预充电器和收集单元。预充电器中的接地电极通常设计得很短。关于预充电器中接地电极长度对收集效率的影响的先前研究已报告,对于20或80毫米长的接地电极,通过预充电器的颗粒电荷量会减少。使用有限元方法针对各种接地电极长度计算电场和空间电荷分布,其中将离子密度分布用作空间电荷分布。对于20 mm长的接地电极,高压线电极周围的电场强度降低。另外,由于电极的边缘,紧邻接地电极的电场强度分布具有两个附加的峰值。对于80毫米长的接地电极,电场强度分布的峰值位于高离子密度区域之外。这些结果表明,用于粒子充电的最佳接地电极长度约为接地电极和高压线电极之间距离的三倍。

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