首页> 外文期刊>Journal of Aerosol Science >AN EXPERIMENTAL STUDY ON THE PERFORMANCE OF A SINGLE DISCHARGE WIRE-PLATE ELECTROSTATIC PRECIPITATOR WITH BACK CORONA
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AN EXPERIMENTAL STUDY ON THE PERFORMANCE OF A SINGLE DISCHARGE WIRE-PLATE ELECTROSTATIC PRECIPITATOR WITH BACK CORONA

机译:背冠电单放电线板静电除尘器性能的实验研究

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摘要

Abstract--The phenomenon of back corona is well corona is well known in that it may reduce the collection efficiency of an electrostatic precipitator.In this study,experimental results are presented for the influence of back corona on the performance of a laboratory scale single-discharge-wire ESP system.The effect of back corona under two power controlled methods,constant voltage operation and constant current operation,has been evaluated.The experimental results showed that as back corona occrurs,the output current and the power consumption are increased under constant voltage operation.The mas scollection efficiency is proportional to the applied voltage.On the other hand,for constant current operation the voltage and the power consumption are decreased under back corona.The mass collection effciency is independent of the applied current.A lateral mixing model was also applied to assist in the discussion of corona power and particle collection efficiency under normal and stable back corona conditions.Both experimental and theoretical results indicated that the back corona has a large effect on submicron particles.The grade efficiency can be reduced by over60% for submicron particles.The large reduction of efficiency for submicron particles is due to significant reduction in both particle charge and migration velocity.Since particles in the submicron region are more sensitive to light scattering,the opacity problem may be aggravted under back corona.
机译:摘要-众所周知,反电晕现象很可能会降低静电除尘器的收集效率。在这项研究中,实验结果显示了反电晕对实验室规模的单电除尘器性能的影响。放电丝电潜泵系统。评价了在恒定功率和恒定电流两种功率控制方法下反向电晕的效果。实验结果表明,随着反向电晕的发生,在恒定的输出电流和功耗会增加。质量收集效率与施加的电压成正比。另一方面,对于恒定电流操作,反电晕下的电压和功耗降低。质量收集效率与施加的电流无关。横向混合模型还用于协助讨论正常和稳定背下的电晕功率和粒子收集效率实验和理论结果均表明反电晕对亚微米颗粒有很大的影响,亚微米颗粒的分级效率可降低60%以上。亚微米颗粒效率的大幅降低是由于两种颗粒均明显降低由于亚微米区域中的粒子对光散射更敏感,因此在反电晕下不透明性问题可能会加剧。

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