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AN EXPERIMENTAL INVESTIGATION OF HCCI COMBUSTION STABILITY USING N-HEPTANE

机译:使用正庚烷进行HCCI燃烧稳定性的实验研究

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摘要

In this paper, cyclic variations in the combustion process of a single-cylinder HCCI engine operated with n-heptane were measured over a range of intake air temperatures and pressures, compression ratios, air/fuel ratios, and exhaust gas recirculation (EGR) rates. The operating conditions produced a wide range of combustion timings from overly advanced combustion where knocking occurred to retarded combustion where incomplete combustion was detected. Cycle-to-cycle variations were shown to depend strongly on the crank angle phasing of 50% heat release and fuel flow rate. Combustion instability increased significantly with retarded combustion phasing especially when the fuel flow rate was low. Retarded combustion phasing can be tolerated when the fuel flow rate is high. It was also concluded that the cyclic variations in imep are primarily due to the variations in the total heat released from cycle-to-cycle. The completeness of the combustion process in one cycle affects the in-cylinder conditions and resultant heat release in the next engine cycle.
机译:在本文中,在进气温度和压力,压缩比,空燃比和排气再循环(EGR)的范围内,测量了使用正庚烷运行的单缸HCCI发动机燃烧过程中的循环变化。 。从发生爆震的过度提前燃烧到检测到不完全燃烧的延迟燃烧,运行条件​​产生了广泛的燃烧正时。循环间的变化在很大程度上取决于50%放热和燃料流量的曲轴转角相位。延迟燃烧阶段会导致燃烧不稳定性显着增加,尤其是当燃料流量较低时。当燃料流量高时,可以容许延迟燃烧定相。还得出结论,imep的周期性变化主要归因于各个周期释放的总热量的变化。一个循环中燃烧过程的完成会影响缸内条件以及在下一发动机循环中产生的热量释放。

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