首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >The effect of axial charge stratification and exhaust gases on combustion 'development' in a homogeneous charge compression ignition engine
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The effect of axial charge stratification and exhaust gases on combustion 'development' in a homogeneous charge compression ignition engine

机译:轴向充气分层和废气对均质充气压燃式发动机燃烧“发展”的影响

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A high-swirl low-compression-ratio, optically accessed engine that was able to produce a stratified charge was used to investigate the differences in homogeneous charge compression ignition (HCCI) combustion and in the propagation of the autoignition front between a non-stratified and a stratified charge. Natural-light images were acquired using a fast camera to visualize HCCI combustion and to quantify the location of autoignition, the apparent 'propagation speed' of the autoignition front, and its variations between closed-valve injection timing (leading to a nearly homogeneous charge) and open-valve injection timing (leading to a strongly axially stratified charge), owing to temperature inhomogeneities that were introduced by utilizing a camshaft which allowed 40 per cent internal exhaust gas recirculation (iEGR). Experimental results show that, in the case without exhaust gas recirculation (EGR) and with closed-valve injection timing, autoignition started under the primary intake valve near the cylinder wall, while, in the case without EGR and with open-valve injection timing, autoignition started between the exhaust valve and the secondary intake valve, closer to the centre of the piston. With 40 per cent iEGR and closed-valve injection timing, autoignition started between the exhaust valve and the primary intake valve near the cylinder wall. These differences can be explained by the difference in the location of hot gases due to the injection timing or due to iEGR. Finally, without EGR, a 'uniform' autoignition front of HCCI combustion from the original sites of autoignition was observed compared with a more 'random development' of the autoignition front with 40 per cent iEGR. Strong local inhomogeneities (possibly a very rich mixture at a low temperature) could be present with 40 per cent iEGR. [PUBLICATION ABSTRACT]
机译:使用能够产生分层装药的高涡流低压缩比光学访问发动机,研究了均质装药压缩点火(HCCI)燃烧以及非分层燃烧与非分层燃烧之间自燃前沿传播的差异。分层收费。使用快速相机获取自然光图像,以可视化HCCI燃烧并量化自燃位置,自燃前沿的表观“传播速度”及其在闭阀喷射正时之间的变化(导致接近均质的充气)由于采用凸轮轴引入了温度不均匀性,从而允许40%的内部废气再循环(iEGR),从而导致温度不均匀,并且开阀喷射正时(导致强烈的轴向分层充气)。实验结果表明,在没有排气再循环(EGR)和关闭阀喷射正时的情况下,自动点火在气缸壁附近的主进气门下开始,而在没有EGR和打开阀喷射正时的情况下,在靠近活塞中心的排气门和辅助进气门之间开始自动点火。通过40%的iEGR和关闭气门喷射正时,在气缸壁附近的排气门和主进气门之间开始自动点火。这些差异可以通过喷射时间或iEGR引起的热气位置差异来解释。最后,在没有EGR的情况下,观察到从原始自燃点开始的HCCI燃烧的“均匀”自燃前沿,而iEGR为40%的自燃前沿更为“随机”发展。 40%的iEGR可能存在强烈的局部不均匀性(在低温下可能是非常浓的混合物)。 [出版物摘要]

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