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Prediction of unburned carbon and NO_x in a tangentially fired power station using single coals and blends

机译:使用单煤和混合煤预测切向火力发电厂中未燃烧的碳和NO_x

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摘要

Coal blends are now widely used by the power generation industry and the general characteristics are well known. Attention is still directed to the emission of NO_x, which is subject to more stringent regulation, and to the amount of carbon in ash. The latter is increased when low NO_x. burners are employed, which is the norm now. It is also increased as a result of additional air staging when over-fire air is added in furnaces, especially tangential fired systems. Such a furnace is studied here. Two approaches can be employed for prediction of NO_x and unburned carbon. The first approach uses global models such as the 'slice' model which requires the combustor reaction conditions as an input but which has a detailed coal combustion mechanism. The second involves a computational fluid dynamic model that in principle can give detailed information about all aspects of combustion, but usually is restricted in the detail of the combustion model because of the heavy computational demands. The slice model approach can be seen to be complimentary to the CFD approach since the NO_x and carbon burnout is computed using the slice model as a post-processor to the CFD model computation. The slice model that has been used previously by our group is applied to a commercial tangentially fired combustor operated in Spain and using a range of Spanish coals and imported coals, some of which are fired as blends. The computed results are compared with experimental measurements, and the accuracy of the approach assessed. The CFD model applied to this case is one of the commercial codes modified to use a number of coal combustion sub-models developed by our group. In particular it can use two independent streams of coal and as such it can be used for the combustion of coal blends. The results show that both model approaches can give good predictions of the NO_x and carbon in ash despite the fact that certain parts of the coal combustion models are not exactly the same. However, if a detailed insight into the combustor behaviour is required then the CFD model must be used.
机译:混合煤现在已广泛用于发电行业,其一般特性众所周知。仍然关注NO_x的排放,该排放受到更严格的管制,以及灰分中的碳含量。当NO_x低时,后者增加。使用燃烧器,这是现在的标准。当在炉子(尤其是切向燃烧系统)中添加过火空气时,由于额外的空气分级,还会增加空气流动性。这里研究这种炉子。可以采用两种方法来预测NO_x和未燃烧的碳。第一种方法使用全局模型,例如“切片”模型,该模型需要燃烧器的反应条件作为输入,但具有详细的燃煤机理。第二个涉及计算流体动力学模型,该模型在理论上可以提供有关燃烧各个方面的详细信息,但由于计算量大,通常在燃烧模型的细节方面受到限制。可以将切片模型方法视为CFD方法的补充,因为使用切片模型作为CFD模型计算的后处理器来计算NO_x和碳燃尽。我们小组先前使用的切片模型已应用于在西班牙运营的商用切向燃烧燃烧器,使用了一系列西班牙煤和进口煤,其中一些以混合物形式燃烧。将计算结果与实验测量值进行比较,并评估方法的准确性。适用于这种情况的CFD模型是修改为使用我们小组开发的许多煤燃烧子模型的商业代码之一。特别是,它可以使用两个独立的煤流,因此可以用于混合煤的燃烧。结果表明,尽管煤燃烧模型的某些部分并不完全相同,但两种模型方法都可以很好地预测灰分中的NO_x和碳。但是,如果需要深入了解燃烧室的行为,则必须使用CFD模型。

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