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Modeling of Spray Combustion for the Prediction of Nitric Oxide Emission from Large-Sized Marine Diesel Engines

机译:大型船舶柴油机一氧化氮排放量预测的喷雾燃烧模型

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A new model of spray combustion with a flame boundary and two NO formation regions was developed in order to predict NO emission from large marine diesel engines. The basic prediction characteristics were studied by using the actual engine specifications and several parameters such as a droplet initial diameter, a fuel injection period, and a flame angle. The simulation could show the change of chemical species composition in the inside and outside of a spray during their combustion. As a result, it was found that this model predicts that the NO formation is frozen after the end of combustion, and the flame angle influences the NO exhaust rate and the thermal efficiency more sensitively than the other parameters.
机译:为了预测大型船用柴油机的NO排放,开发了一种具有火焰边界和两个NO形成区域的喷雾燃烧新模型。通过使用实际发动机规格和几个参数(例如液滴的初始直径,燃料喷射周期和火焰角)研究了基本的预测特性。模拟可以显示喷雾燃烧过程中喷雾内部和外部化学物种组成的变化。结果,发现该模型预测NO形成在燃烧结束后被冻结,并且火焰角比其他参数更敏感地影响NO排气速率和热效率。

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