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Effects of direct injection timing associated with spark timing on a small spark ignition engine equipped with ethanol dual-injection

机译:与火花正时相关的直接喷射正时对配备乙醇双喷射的小型火花点火发动机的影响

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Dual injection of ethanol fuel (DualEI) has been in development. DualEI has the potential in increasing the compression ratio and thermal efficiency of spark ignition engines by taking the advantages of ethanol fuel properties and the direct injection. This paper reports an experimental investigation of the effect of direct injection (DI) timing associated with spark timing on the performance of a small DualEI engine. Experiments were conducted with fixed port injection timing and varied DI timing before (early) and after (late) the intake valve closed at 3500 RPM and two load conditions. Results show that the engine performance is enhanced by early DI timing, although the variation of IMEP and indicated thermal efficiency with DI timing is not significant either with early DI timing or in most of the tested conditions with late DI timing. Only in the medium load condition when the DI timing is retarded from 80 to 60 CAD bTDC, the IMEP and thermal efficiency significantly reduced by about 16% due to the increased initial combustion duration, resulting in reduced flame speed and increased combustion instability. The results also show different effects of early and late DI timing associated with the spark timing on engine emissions. With late DI timing, the engine emissions of CO and NO increase with the advance of late DI timing and spark timing. With early DI timing, the engine emissions increase with the advance of spark timing. However, the variation of engine emissions with early DI timing is more complicated than that late.
机译:乙醇燃料的双重喷射(DualEI)已经在开发中。利用乙醇燃料特性和直接喷射的优势,DualEI具有提高火花点火发动机的压缩比和热效率的潜力。本文报告了与火花正时相关的直接喷射(DI)正时对小型DualEI发动机性能的影响的实验研究。在进气门在3500 RPM和两种负载条件下关闭之前(早期)和之后(后期),使用固定端口喷射正时和变化的DI时机进行实验。结果表明,尽管IMEP的变化和指示的热效率随DI时机的变化在早期DI时机中或在大多数经过测试的条件下都具有较早的DI时机,但发动机的性能都通过早期DI时机得到了增强。仅在中等负荷条件下,当DI定时从80到60 CAD bTDC延迟时,由于初始燃烧持续时间的增加,IMEP和热效率会显着降低约16%,从而导致火焰速度降低和燃烧不稳定性增加。结果还显示了与火花正时相关的早期和正后DI正时对发动机排放的不同影响。随着DI正时的延迟,随着DI正时和火花正时的提前,发动机的CO和NO排放量增加。在早期的DI正时下,发动机排放随着火花正时的增加而增加。但是,与早期DI正时相比,发动机排放的变化要复杂得多。

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