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Autoignition Initiation and Development of N-Heptane HCCI Combustion Assisted by Inlet Air Heating, Internal EGR or Spark Discharge: An Optical Investigation

机译:通过入口空气加热,内部EGR或火花放电辅助N-庚烷HCCI燃烧的自燃启动和开发:光学研究

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An optically accessed, single-cylinder engine capable of operating at both spark ignition and Homogeneous Charge Compression Ignition (HCCI) combustion was used to investigate the difference in the initiation and development of HCCI combustion due to charge stratification, internal Exhaust Gas Recirculation (iEGR) or spark discharge. Natural-light images were acquired to visualize the differences in chemiluminescent structure (i.e., reaction structures) at the early and late stages of formation during HCCI combustion in an attempt to find better ways of controlling HCCI combustion at low and high loads. Regardless of charge stratification, the cycle-to-cycle deviation of autoignition from temporal and spatial repeatability was comparatively small. Flame initiation appeared initially at single or spatially adjacent sites and we did not observe the growth of any new, (i.e., "secondary" in time) reacting "islands" separate from the original sites. However, with increasing rates of iEGR, the autoignition process was a more spatially random phenomenon, with the development of new, in time, reacting "islands" being more evident. With spark-assisted HCCI combustion, it was evident that HCCI combustion was advanced by more than 35 crank angle degrees due to the spark discharge but that the combustion process did not appear to propagate in the form of a flame front. Flame initiation would appear at a single spatial location - not always in the vicinity of the spark plug - and we did observe the growth of new, in time, reacting "islands", separate from the original sites.
机译:光学访问,单缸能够在两个火花点火和均质充量压缩点火(HCCI)燃烧运行的发动机被用于研究在HCCI燃烧由于电荷分层的起始和发展的差异,内部废气再循环(IEGR)或火花放电。自然光图像被收购显现在化学发光结构(即,反应结构)在形成的早期和晚期HCCI燃烧过程中的尝试的差异来找到在低负荷和高负荷控制HCCI燃烧的更好的方法。不管电荷分层,从时间和空间的重复性自燃的周期到周期的偏差为比较小。火焰开始最初出现在单一或空间上相邻的位点,我们没有观察到生长的任何新的,(即,在时间“次级”)反应“岛”从原始网站分开。然而,随着IEGR率持续上升,自燃过程是一个较为空间随机现象,用新的发展,及时,反应“孤岛”更加明显。与火花辅助的HCCI燃烧,很明显,HCCI燃烧是由超过35度的曲柄转角,由于火花放电,但燃烧过程中没有出现火焰前缘的形式传播前进。在火花塞附近并不总是 - - 火焰开始将出现在一个单一的空间位置,我们确实观察到的新的增长,假以时日,“孤岛”,从原来的网站单独反应。

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