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Experimental study on the effect of pre-ignition heat release on GCI engine combustion

机译:预点火热释放对GCI发动机燃烧影响的实验研究

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Interactions between fuel and engine are basic issues for gasoline compression ignition (GCI) engine, and recent engine experiment results show that the gasoline fuel with low-octane number RON = 60-80 is optimal for GCI engines. However, gasoline fuel with low-octane ratings exhibits significant low-temperature combustion behavior, which will significantly affect the entire combustion process. In this study, different toluene primary reference fuels (TPRF) with identical research octane number (RON) but various octane sensitivities were employed. Optimized start of injection (SOI) was obtained based on indicated mean effective pressure (IMEP), combustion stability limits and engine emissions. Under the optimized SOI, the role of fuel sensitivity in combustion processes was investigated. With addressing low-temperature heat release (LTHR) before main ignition, the effect of intake conditions and fuel sensitivity on combustion phasing was clarified. The results indicate that the LTHR only occurs when the SOI is sufficiently advanced, and an earlier injection timing can achieve stable combustion, higher IMEP and lower NOX emission. More obvious LTHR promotes the advancement of combustion phasing, and the magnitude of LTHR is negatively correlated with intake temperature but positively correlated with intake pressure. The effect of increasing LTHR magnitude on combustion phasing is similar to that of increasing intake temperature. Finally, the effect of octane sensitivity on LTHR was also studied, which shows that the impact of LTHR between different sensitivity fuels is mainly reflected in combustion phasing, and the onset of LTHR is more advanced for low sensitivity fuels.
机译:燃料和发动机之间的相互作用是汽油压缩点火(GCI)发动机的基本问题,最近的发动机实验结果表明,具有低辛烷值RON = 60-80的汽油燃料对GCI发动机最佳。然而,具有低辛烷值额定值的汽油燃料表现出显着的低温燃烧行为,这将显着影响整个燃烧过程。在本研究中,不同的甲苯初级参考燃料(TPRF)具有相同的研究辛烷值(RON),但使用各种辛烷敏感性。基于指示的平均有效压力(IMEP),燃烧稳定性限制和发动机排放获得了优化的注射开始(SOI)。在优化的SOI下,研究了燃料敏感性在燃烧过程中的作用。通过寻址主点火前的低温热释放(LTHR),阐明了进气条件和燃料序列对燃烧相位的影响。结果表明,当SOI充分前进时,仅发生曲杆,并且早先的喷射正时可以实现稳定的燃烧,更高的IMEP和较低的NOx排放。更明显的曲线促进燃烧相位的进步,并且曲线的大小与进气温度呈负相关,但与进气压力正相关。增加型型燃烧相位上的效果类似于增加进气温度的效果。最后,还研究了辛烷值敏感性对曲杆的影响,这表明在不同灵敏度燃料之间的影响主要反映在燃烧相位中,并且对于低灵敏度燃料,曲线的开始更先进。

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