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MULTI-STAGE COLLECTOR DESIGN AN APPLICATIONS

机译:多级收集器设计应用

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The Multi Stage Collector (MSC) concept for ultra-fine participate control not only retains the best advantages of current state-of-the-art technology but also makes significant improvements. The new MSC design provides a synergistic combination of both single- and two-stage electrostatic precipitation while incorporating an additional collector-stage by filtering the gas exiting the collector through a barrier collector-zone. This arrangement ensures that essentially all dust would be detained in this final stage. The MSC contains multiple narrow and wide zones formed by a plurality of parallel corrugated plates. Enclosed in the narrow zones are discharge electrodes. These electrodes provide a non-uniform electric field leading to corona discharge. The corona discharge causes participate matter in the gas flow to become charged. Wide regions contain barrier filters thus creating the two-stage precipitator with relatively uniform electric field. In these regions, particles are collected on both plates and on the porous barrier elements, which also act as the final filtering stage. Results of the applications analyses and future development work are discussed. The gas flow analyses with an aid of the CFD model are presented below.
机译:用于超细参与控制的多级收集器(MSC)概念不仅保留了当前最先进技术的最佳优势,而且产生了显着的改进。新的MSC设计提供了单级和两级静电沉淀的协同组合,同时通过滤除通过阻挡集电区离开收集器的气体来结合附加的收集器级。这种安排确保基本上所有的灰尘都会在该最后阶段被释放。 MSC包含由多个平行的波纹板形成的多个窄和宽区域。封闭在窄区域中是放电电极。这些电极提供导致电晕放电的非均匀电场。电晕放电导致在气流中的参与变为充电。宽区域包含屏障过滤器,从而产生具有相对均匀的电场的两级除尘器。在这些区域中,在两个板上和多孔屏障元件上收集颗粒,其也充当最终过滤阶段。讨论了应用程序分析和未来发展工作。借助CFD模型的气体流分析如下所述。

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