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Visualization Research and Optimization Strategy for Combustion Process and Emission Characteristics of Internal Exhaust Gas Recirculation Small Non-Road Diesel Engine

机译:内部废气再循环小型非公路柴油发动机燃烧过程和排放特性的可视化研究与优化策略

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摘要

Based on a small non-road diesel engine, internal exhaust gas recirculation (IEGR) was realized by the exhaust valve re-opening (2EVO). The influences of IEGR on combustion and emission performance were analyzed. The results showed that in-cylinder pressure peak decreased, the start of heat release was delayed by 0.5 oCA and the heat release rate peak was reduced after the introduction of IEGR. Furthermore, the average temperature of combustion flame was reduced, centering between 1900 and 2100 K. That was beneficial to curbed nitrogen oxides (NOX) emissions. The average value for KL factor was obviously increased within the entire range of combustion, which resulting in an increase in soot emission. In terms of emission characteristics, NOX emission was significantly reduced under the original injection timing but soot emission was increased slightly. Subsequently, the start of injection (SOI) were adjusted based on IEGR and two fuel injection control strategies were formulated from the perspective of reducing pollutant emissions and fuel consumption: Strategy 1 keeping BSFC consistent with the original engine, the NOX+HC weighted emission was reduced by 17.6 %; Strategy 2 keeping NOX+HC emissions consistent with the original engine, BSFC and CO were reduced by 10 % and 20 % respectively and Soot emission was slightly increased.
机译:基于小型非公路柴油发动机,通过排气阀重新打开(2evo)实现内部废气再循环(IGR)。分析了碘对燃烧和排放性能的影响。结果表明,缸内压力峰值降低,热释放的开始延迟0.5℃,引入IGR的引入后减少了热释放率峰值。此外,减少了燃烧火焰的平均温度,在1900和2100k之间定心。这对氧化氮氧化物(NOx)排放有益。 KL因子的平均值明显增加在整个燃烧范围内,这导致烟灰发射增加。在发射特性方面,在原始注射正时,NOx发射显着降低,但烟灰排放略有增加。随后,基于IGREGR和两个燃料喷射控制策略调整注射的开始(SOI),从减少污染物排放和燃料消耗的角度制定出来:策略1使BSFC保持与原始发动机一致,NOx + HC加权发射是减少17.6%;策略2保持与原始发动机一致的NOx + HC排放,BSFC和CO分别降低了10%,分别增加了20%,烟灰发射略有增加。

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