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Agglomeration rate and action forces between atomized particles of agglomerator and inhaled-particles from coal combustion

机译:团聚器雾化颗粒与煤燃烧吸入颗粒之间的团聚速率和作用力

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In order to remove efficiently haled-particles emissions from coal combustions, a new way was used to put forward the process of agglomeration and the atomization was produced by the nozzle and then sprayed into the flue before precipitation devices of power station boiler in order to make inhaled-particles agglomerate into bigger particles, which can be easily removed but not change existing running conditions of boiler. According to this idea, a model is set up to study agglomeration rate and effect forces between fly ash inhaled-particles and atomized agglomerator particles. The developed agglomeration rate was expressed by relative particle number decreasing speed per unit volume. The result showed that viscosity force and flow resistance force give main influences on agglomeration effect of inhaled-particles, while springiness force and gravity have little effect on agglomeration effect of theirs. Factors influencing the agglomeration rate and effect forces are studied, including agglomerator concentration, agglomerator flux and agglomerator density, atomized-particles diameters and inhaled-particles diameter and so on.
机译:为了有效消除煤燃烧过程中产生的捕集颗粒物,提出了一种新的方法,提出了团聚过程,并通过喷嘴产生了雾化作用,然后喷入烟道气,然后再运到电站锅炉的沉淀装置中,以实现吸入的颗粒会聚集成更大的颗粒,这些颗粒很容易去除,但不会改变锅炉的现有运行条件。根据这一思想,建立了一个模型来研究粉煤灰吸入颗粒与雾化结块颗粒之间的结块率和作用力。形成的附聚率用每单位体积的相对颗粒数降低速度表示。结果表明,黏性力和流动阻力对吸入颗粒的团聚作用有主要影响,而弹性力和重力对其吸入团聚的影响很小。研究了影响团聚速率和作用力的因素,包括团聚剂浓度,团聚剂通量和团聚剂密度,雾化粒径和吸入粒径等。

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