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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Mild combustion in forward flow furnace of refinery-off gas for low-emissions by deflector
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Mild combustion in forward flow furnace of refinery-off gas for low-emissions by deflector

机译:导流器在炼厂尾气的顺流炉中进行轻度燃烧以实现低排放

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Two dimensional numerical simulations were carried out to study the performance of a forward flow furnace. A deflector for application in the furnace was proposed to achieve complete burnout of reactant and low pollutant emissions, simultaneously. The eddy dissipation concept model coupled with detailed reaction mechanism GRI-Mech 2.11 was used. The predictions show a good agreement with the measurements. The effects of the deflector height H, the deflector diameter D, the excess air factor lambda, and the ethane content in the refinery-off gas were investigated. The results indicate that there are four zones in the furnace: a central jet zone (a), an ignition zone (b), a combustion reaction zone (c), and a flue gas zone (d), according to the distribution profiles of H2CO and OH. The deflector blocks the reactant jet flow and prolongs the residence time of the flue gases before and behind the deflector which is of benefit for the oxidation of CO. The normalized spatial temperature variations are less than 10.5% and, thus, the temperature distribution in the furnace is very uniform. Moreover, the emissions are low and less than 10 ppm in some cases. Therefore, the mild regime is realized in the forward flow furnace. (C) 2015 Elsevier Ltd. All rights reserved.
机译:进行了二维数值模拟以研究前向炉的性能。提出了在炉中使用的偏转器,以同时实现反应物的完全烧尽和低污染物排放。使用了涡流消散概念模型以及详细的反应机理GRI-Mech 2.11。预测结果与测量结果吻合良好。研究了导流板高度H,导流板直径D,过量空气系数λ和精炼厂废气中乙烷含量的影响。结果表明,根据炉膛的分布曲线,炉内有四个区域:中央射流区(a),点火区(b),燃烧反应区(c)和烟气区(d)。 H2CO和OH。导流板会阻塞反应物射流,并延长导流板前后的烟气滞留时间,这有利于CO的氧化。归一化的空间温度变化小于10.5%,因此,塔内的温度分布炉子非常均匀。而且,排放低并且在某些情况下小于10 ppm。因此,在顺流炉中实现了温和的状态。 (C)2015 Elsevier Ltd.保留所有权利。

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