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Aerodynamics and combustion in a fluidized bed furnace chamber

机译:流化床炉膛内的空气动力学和燃烧

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摘要

In determining the flow patterns of an entering fluid in a particular space, it is advantageous to separate th fluid into segments of different velocities. This is possible with, for example, the burning of fossil fuels by controlling he fuel/oxidant mixing ratio to decrease the emission of pollutants. In contrast with firing techniques developed earlier, which wer basically concerned with the problems of stable ignition and the burn-out times of fuel, contemporary firing methods need to consider the necessity for decreasing emissions of polluting combustion products. For example, during coal-firing, the quantity of nitrogen oxides originating from the nitrogen in the fuel can be considerably decreased by establishing zones which lack air during certain firing phases, that is, by introducing different stages for feeding of air and fuel, thus controlling the mixing ratio and thereby reducing emissions.
机译:在确定进入特定空间中的流体的流型时,将流体分成不同速度的段是有利的。例如,通过控制燃料/氧化剂的混合比以减少污染物的排放来燃烧化石燃料是可能的。与较早开发的基本上涉及稳定点火和燃料燃尽时间问题的点火技术相反,现代点火方法需要考虑减少污染燃烧产物排放的必要性。例如,在燃煤期间,通过在某些燃烧阶段建立缺乏空气的区域,即通过引入不同的空气和燃料供给阶段,可以显着减少源自燃料中氮的氮氧化物的数量。控制混合比例,从而减少排放。

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