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Computational Study of the Effect of Increasing the Fuel Injection Pressure Up to 3000 Bar on the Performance of the Diesel Engine and its Gaseous Emissions

机译:计算燃油喷射压力高达3000杆对柴油发动机性能及其气态排放效果的计算研究

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Fuel injection pressure has a great influence on diesel engine performance and gaseous emissions. The paper presents the results of single-cylinder engine modeling with fuel injection pressure up to 3000 bar. 3D modeling was performed in Fire ESE Diesel. The results show that increasing fuel injection pressure improves the combustion process. With the fuel injection pressure from 1500 to 3000 bar, the NOx volume decreases by 23.2%. However, NOx did not meet the emission level of EURO VI standard. Therefore, it is necessary to use exhaust gas recirculation (EGR) together with ultra-high fuel injection pressure. When using EGR at 27%, the NOx volume reduces by 93% and NOx emissions meet EURO VI standard at all values of fuel injection pressure from 1500 to 3000 bar, without exhaust after-treatment measures. Nevertheless, at 0% EGR break specific fuel consumption (BSFC) increases by 4.9% indicator power decreases by 4.5% and at 27% EGR the BSFC increases by 4.7% and indicator power decreases by 4.1%.
机译:燃油喷射压力对柴油机性能和排放的气体有很大的影响。本文提出的单缸发动机建模的结果与燃料喷射压力高达3000巴。 3D建模在消防ESE柴油进行。结果表明,增加的燃料喷射压力改善了燃烧过程。从1500至3000巴的燃料喷射压力时,NOx体积23.2%减少。然而,氮氧化物没有达到欧VI标准的排放水平。因此,有必要具有超高燃料喷射压力一起使用排气再循环(EGR)。当在27%的使用EGR时,NOx体积由93%减少和NOx排放满足燃料喷射压力的从1500至3000巴的所有值EURO VI标准,而不排气后处理措施。然而,在0%EGR断裂燃料消耗率(BSFC)4.9%指示剂功率增大4.7%下降了4.5%,在27%的EGR BSFC增加并且指示功率4.1%降低。

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