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首页> 外文期刊>Flow, turbulence and combustion >Premixed LPG plus Air Combustion in a Bubbling FBC with Variable Content of Solid Particles in the Bubbles
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Premixed LPG plus Air Combustion in a Bubbling FBC with Variable Content of Solid Particles in the Bubbles

机译:预混合的LPG加空气燃烧在鼓泡FBC中,气泡中的固体颗粒的可变含量

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摘要

This paper presents the results of studies on the combustion of gaseous LPG in a bubbling fluidized bed. Relationships between the temperature, the bed mass and the location of the combustion zone and the NOx and CO concentrations in exhaust gases are described. The concentrations of both gases increase with rising temperature and then quickly decline. It has been shown that despite the increase in average bed temperature the drop in the emission of nitrogen oxides is connected with lower temperatures inside the exploding bubbles. These temperatures strongly depend on the quantity of solid contained in them. The paper also presents the results of modeling the combustion process in a fuel-air bubble. The modeling carried out has shown that above the temperature at which bubble self-ignition becomes possible inside the bed, with further bed temperature rise there is an increase in the solids content inside the bubbles at the moment of explosion. As a result, the maximum temperature inside the bubbles falls and the emission of nitrogen oxides is reduced. In turn, the emission of CO is linked to the propagation of combustion between bubbles when self-ignition cannot take place inside them.
机译:本文介绍了气泡流化床中气态LPG燃烧的研究结果。描述了温度,床肿块与燃烧区的位置与废气中的NOx和COx浓度之间的关系。两种气体的浓度随着温度上升而增加,然后迅速下降。已经表明,尽管平均床温度升高,但氮氧化物的发射中的下降与爆炸气泡内的较低温度连接。这些温度强烈取决于它们所含的固体量。本文还介绍了在燃料气泡中建模燃烧过程的结果。进行的模型表明,在床内泡沫自燃的温度之上,具有进一步的床温度升高,在爆炸时,气泡内的固体含量增加。结果,气泡内部的最大温度下降,并且减少了氮氧化物的发射。反过来,当自燃不能在它们内部时,CO的发射与气泡之间的燃烧的传播相关联。

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