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首页> 外文期刊>Power Technology and Engineering >PARAMETRIC COMPUTATIONAL STUDIES OF NO_x EMISSION REDUCTION IN STAGED COMBUSTION OF IDEAL FUEL-AIR MIXTURES
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PARAMETRIC COMPUTATIONAL STUDIES OF NO_x EMISSION REDUCTION IN STAGED COMBUSTION OF IDEAL FUEL-AIR MIXTURES

机译:理想燃料-空气混合物分级燃烧中NO_x排放降低的参数计算研究

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This paper is the second of series of articles devoted to computational studies for optimization of the combustion of fuel-oxygen mixtures with combustion chamber exhaust temperatures of 1600°C or more while meeting pollution emission standards. Calculations of the combustion of ideally mixed fuel-air mixtures in a combustor consisting of two sequentially positioned (staged) combustion volumes, each with its own burner, are presented. The first burner is a traditional low-emission combustion chamber with combustion of a pre-mixed fuel-air mixture with a swirler and a pre-mixing chamber, and pilot and main burners. The second burner lies downstream in the flow and a fuel-air mixture with a different composition is fed into it through a special aperture; this mixture is burnt in a medium with reduced oxygen content and a high temperature. The distribution and composition of the fuel-air mixture feeds between the two burners are optimized to attain minimum NO~( x )emissions for outlet temperatures of 1700°C. The optimum length of the second combustion volume is determined for complete burnup of the fuel with minimum concentrations of the oxides of nitrogen and carbon at its outlet. The results can be used to evaluate the minimum possible level of nitrogen oxide emissions attainable in the sequential combustion scheme for ideally mixed fuel-air mixtures.
机译:本文是致力于计算研究的系列文章中的第二篇,旨在优化燃烧室排气温度为1600°C或更高,同时又符合污染排放标准的燃料-氧气混合物的燃烧。提出了燃烧器中理想混合的燃料-空气混合物的燃烧计算,该燃烧器由两个顺序放置(分级)的燃烧容积组成,每个燃烧容积都有自己的燃烧器。第一燃烧器是传统的低排放燃烧室,其具有利用旋流器和预混合室的预混合的燃料-空气混合物以及引燃和主燃烧器的燃烧。第二个燃烧器位于气流的下游,具有不同成分的燃料-空气混合物通过一个特殊的孔进入其中。该混合物在氧气含量降低和高温的介质中燃烧。优化了两个燃烧器之间的燃料-空气混合物进料的分布和组成,以在出口温度为1700°C时获得最低的NO〜(x)排放量。确定第二燃烧体积的最佳长度,以使燃料完全燃烧,并使出口处的氮和碳的氧化物浓度最小。该结果可用于评估理想的混合燃料空气混合物在顺序燃烧方案中可达到的最小氮氧化物排放水平。

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