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EFFECT OF RECYCLED BURNED GASES ON HOMOGENEOUS CHARGE COMPRESSION IGNITION COMBUSTION

机译:回收燃烧气体对均质充量压缩点火燃烧的影响

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Homogeneous Charge Compression Ignition (HCCI) also known as Controlled Auto-Ignition (CAI) combustion, has recently emerged as a viable alternative combustion process to the conventional spark ignition (SI) gasoline and compression ignition (CI) Diesel engines, due to its potential for extremely low emissions and good fuel economy. One of the most important means of achieving and controlling HCCI combustion is to use recycle burned gases (EGR). In order to understand better the effects of recycled burned gases on such combustion process, detailed analytical studies were performed. Since HCCI combustion is a process dominated by chemical kinetics of the fuel-air mixture, an engine simulation model with detailed chemical kinetics has been developed and applied to a four-stroke gasoline engine fuelled with isooctane. After calibration and validation, the engine simulation mode was used to investigate the effects of EGR on HCCI combustion in a four-stroke gasoline engine. The characteristics of HCCI combustion investigated include the autoignition timing, the partial burning and knocking combustion, and NO emission. The heat capacity, dilution, chemical, and charge heating effects on the HCCI combustion process were studied individually by means of a series of analytical studies. When isothermal EGR is used, such as in HCCI combustion with diesel type fuels, the heat capacity has the largest effect on extending the combustion duration and slowing down the rate of the combustion. The larger heat capacity of EGR gases tends to retard the start of autoignition. The dilution of oxygen by EGR has little effect on autoignition but it has a similar effect on extending the combustion duration to that of the dilution effect. The dilution effect of EGR on lowing heat release rate is only noticeable at high concentrations. Finally, the chemical effect of CO_2 and H_2O was found to be negligible. When hot EGR is used in HCCI combustion, the charge heating effect of EGR has much greater effect on ignition timing and some less significant effect on the combustion duration and heat release rate than the other effects.
机译:均质增压压缩点火(HCCI)也称为受控自动点火(CAI)燃烧,由于其潜力,最近已成为传统火花点火(SI)汽油和压缩点火(CI)柴油发动机的可行替代燃烧过程。极低的排放和良好的燃油经济性。实现和控制HCCI燃烧的最重要方法之一是使用循环燃烧气体(EGR)。为了更好地理解再循环燃烧气体对这种燃烧过程的影响,进行了详细的分析研究。由于HCCI燃烧是一个以燃料-空气混合物的化学动力学为主导的过程,因此已开发出具有详细化学动力学的发动机仿真模型,并将其应用于以异辛烷为燃料的四冲程汽油发动机。经过校准和验证后,发动机仿真模式用于研究EGR对四冲程汽油发动机HCCI燃烧的影响。所研究的HCCI燃烧的特征包括自燃时间,部分燃烧和爆震燃烧以及NO排放。通过一系列分析研究,分别研究了热容量,稀释度,化学和电荷加热对HCCI燃烧过程的影响。当使用等温EGR时,例如在使用柴油类型的燃料进行HCCI燃烧时,热容量对延长燃烧持续时间和减慢燃烧速率影响最大。 EGR气体的较大热容量趋向于阻碍自燃的开始。通过EGR稀释氧气对自燃几乎没有影响,但在延长燃烧持续时间方面与稀释效果具有相似的影响。 EGR对降低放热速率的稀释作用仅在高浓度下才明显。最后,发现CO_2和H_2O的化学作用可以忽略。当热EGR用于HCCI燃烧时,EGR的增压加热作用对点火正时的影响要大得多,而对燃烧持续时间和放热率的影响则要比其他作用小得多。

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