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Emission and Combustion Misfire of Engine with Oxygen-enriched in Dynamic Start Process

机译:发动机的排放和燃烧失火,在动态开始过程中富含氧气

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The investigation on the variable intake-air composition (oxygen concentration 21%-27%) in the start of a spark ignition engine aims to study the dynamic characteristics of combustion and emission to understand the feasibility improving the performance of engine. The oxygen-enriched air improves combustion, promotes the stability and reduces CO and HC obviously, and also results in a little higher NO_x. Nevertheless the rise of NO_x keeps the lower level in the start process. It is recognized that the oxygen enrichment in the start can bring a potential to control combustion and emission. Experiment results show that the function of oxygen-enriched intake air is more important in the lower degree of oxygen enrichment, such as 23%~25%. In the fact as the oxygen enrichment arrives in a higher level, the weaker the reducing HC and CO emissions therefore the lower oxygen enrichment in engine is much more profitable for a comprehensive low HC, CO and NO_x emissions. Through detecting the misfire behavior by optical sensor, it is clear that the misfire rate decreases with oxygen-enrichment and it leads to the higher combustion stability in the mild oxygen-enrichment.
机译:火花点火发动机开头的可变进气组合物(氧浓度21%-27%)的研究旨在研究燃烧和排放的动态特性,了解改善发动机性能的可行性。富氧空气改善燃烧,显然促进了稳定性并减少了CO和HC,并且还导致稍高的NO_X。然而,NO_X的兴起在开始过程中保持较低级别。人们认识到,起始中的氧气富集可以带来控制燃烧和排放的潜力。实验结果表明,富氧进气的功能在较低的氧富集程度中更重要,例如23%〜25%。事实上,随着氧富集到达更高水平的情况下,降低HC和CO排放的较弱,因此发动机的较低富氧富含富含氧气,对于全面的低HC,CO和NO_X排放更有利可图。通过检测光学传感器的失火行为,显然失火率随氧气富集而降低,并且它导致温和氧气的燃烧稳定性更高。

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