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首页> 外文期刊>KSME International Journal >Multidimensional engine modeling: NO and soot emissions in a diesel engine with exhaust gas recirculation
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Multidimensional engine modeling: NO and soot emissions in a diesel engine with exhaust gas recirculation

机译:多维发动机建模:带有废气再循环的柴油发动机中的NO和烟尘排放

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摘要

The effects of EGR(Exhaust Gas Recirculation) on heavy-duty diesel engine performance, NO and soot emissions were numerically investigated using the modified KIVA-3V code. For the fuel spray, the atomization model based on the linear stability analysis and spray wall impingement model were developed for the KIVA-3V code. The Zeldovich mechanism for the formation of nitric oxide and the soot model suggested by Hiroyasu et al. were used to predict the diesel emissions. In this paper, the computational results of fuel spray, cylinder pressure, and emissions were compared with experimental data, and the optimum EGR rates were sought from the NO and soot emissions trade-off. The results showed that the EGR is effective in suppressing NO but the soot emission was increased considerably by EGR. Using cooled EGR, soot emission could be enhanced without worsening of NO.
机译:使用修改后的KIVA-3V程序,对EGR(废气再循环)对重型柴油机性能,NO和烟尘排放的影响进行了数值研究。对于燃油喷雾,针对KIVA-3V代码开发了基于线性稳定性分析和喷雾壁撞击模型的雾化模型。 Hiroyasu等人提出了形成氮氧化物的Zeldovich机理和烟灰模型。被用来预测柴油的排放量。在本文中,将燃油喷雾,气缸压力和排放的计算结果与实验数据进行了比较,并从NO和烟尘排放的权衡中寻求了最佳EGR率。结果表明,EGR有效地抑制了NO,但是通过EGR,烟尘的排放显着增加。使用冷却的EGR,可以增加烟尘排放,而不会降低NO的排放。

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