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Fuel Flexibility Study of a Compression Ignition Engine at High Loads

机译:高负荷压缩点火发动机的燃料灵活性研究

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Engine experiments were performed on a single-cylinder heavy-duty engine at relatively high loads to investigate the regions where the combustion characteristics are unchanged regardless of the fuel octane number. Primary Reference Fuels (PRFs) and three different commercial fuels with RON values ranging from 0 to 100 were tested in this study. A sweep of net indicated mean effective pressure (IMEPNet) of 5 to 20 bar, absolute intake pressure of 1.5 to 2.8 bar, exhaust gas recirculation (EGR) of 0 to 40%, and fuel injection pressure of 700 to 1400 bar were performed to investigate the combustion characteristics, ignition delay time, combustion duration, efficiency, and emissions. At the highest load point (IMEPNet = 20 bar), all the fuels burn as in conventional diesel combustion. Despite the wide range of octane numbers, all fuels had similar ignition delay time, combustion duration, indicated efficiency, and emissions at 10 to 20 bar IMEPNet. It follows that CI mode is the only realistic option at high load and pressure points. All fuels showed similar combustion duration and emission levels behavior as a function of EGR. The present study shed light on the load threshold above which the combustion characteristics of fuels are close enough to consider the engine as ‘fuel flexible’.
机译:在相对高的载荷下在单缸重型发动机上进行发动机实验,以研究燃烧特性不包括燃料辛烷值的区域。在本研究中测试了主要参考燃料(PRF)和三种不同的商业燃料,RON值范围为0至100。扫描的净指示的平均有效压力(Imepnet)为5至20巴,绝对摄入压力为1.5至2.8巴,排气再循环(EGR)为0〜40%,并进行700至1400巴的燃油喷射压力研究燃烧特性,点火延迟时间,燃烧持续时间,效率和排放。在最高负载点(IMepnet = 20 bar),所有燃料都像传统的柴油燃烧一样燃烧。尽管辛烷值广泛,但所有燃料都具有类似的点火延迟时间,燃烧持续时间,指示效率,10至20巴的排放。因此,CI模式是高负载和压力点处的唯一现实选项。所有燃料显示出与EGR的功能相似的燃烧持续时间和发射水平行为。目前的研究揭示了高于负载阈值的荧光阈值,燃料的燃烧特性足够接近,以考虑发动机作为“燃料柔性”。

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