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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Scavenging port based injection strategies for an LPG fuelled two-stroke spark-ignition engine
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Scavenging port based injection strategies for an LPG fuelled two-stroke spark-ignition engine

机译:液化石油气二冲程火花点火发动机的基于进气道的喷射策略

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摘要

Conventional two-stroke, spark-ignition engines exhibit poor fuel economy and emit high hydrocarbon (HC) emissions due to short-circuiting of the fuel-air mixture. Literature suggests that the use of LPG in two-stroke engines poses further problems in terms of higher HC emissions. In this work, timed compressed air injection into the transfer ducts with LPG induction through the manifold (AI-LPG-IND) was adopted to reduce short-circuiting losses in a two-stroke spark-ignition engine. The engine was fully instrumented for performance, emission and combustion related measurements. Gaseous LPG injection through one of the boost ports (LPG-BPI) of the engine was also attempted. Experimental results at 25% and 100% throttle were compared with manifold injection of LPG (LPG-MI) and gasoline at the best spark timing. The AI-LPG-IND system resulted in 40% reduction in HC emissions as compared to the LPG-MI system with a simultaneous increase in the power output at 25% throttle. It was also better than the LPG-BPI system in terms of emissions at this condition. However, due to the relatively small quantity of injected air at 100% throttle, the AI-LPG-IND system was similar in performance to the LPG-MI. The LPG-BPI system reduced HC emissions at 100% throttle, but the thermal efficiency was lower than other systems.
机译:常规的二冲程火花点火发动机由于燃料-空气混合物的短路而显示出差的燃料经济性并且排放高碳氢化合物(HC)排放物。文献表明,在二冲程发动机中使用LPG会带来更高的HC排放问题。在这项工作中,采用定时压缩空气通过歧管(AI-LPG-IND)引入带有LPG的进气管道来减少两冲程火花点火发动机的短路损耗。该发动机已针对性能,排放和燃烧相关的测量进行了全面检测。还尝试通过发动机的增压口之一(LPG-BPI)进行气态LPG喷射。在最佳点火正时下,将油门在25%和100%时的实验结果与液化石油气(LPG-MI)和汽油的歧管喷射进行了比较。与LPG-MI系统相比,AI-LPG-IND系统可将HC排放量减少40%,同时在25%节流阀的情况下可同时增加功率输出。在此条件下的排放方面,它也优于LPG-BPI系统。但是,由于在100%节气门时喷射的空气量相对较少,因此AI-LPG-IND系统的性能与LPG-MI相似。 LPG-BPI系统以100%的油门速度减少了HC排放,但热效率低于其他系统。

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