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Effects of End-of-Injection Transients on Combustion Recession in Diesel Sprays

机译:注入瞬变对柴油喷雾燃烧经济衰退的影响

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End-of-injection transients have recently been shown to be important for combustion and emissions outcomes in diesel engines. The objective of this work is to develop an understanding of the coupling between end-of-injection transients and the propensity for second-stage ignition in mixtures upstream of the lifted diesel flame, or combustion recession. An injection system capable of varying the end-of-injection transient was developed to study single fuel sprays in a newly commissioned optically-accessible spray chamber under a range of ambient conditions. Simultaneous high-speed optical diagnostics, namely schlieren, OH* chemiluminescence, and broadband luminosity, were used to characterize the spatial and temporal development of combustion recession after the end of injection. As ambient conditions become cooler or contain less oxygen (i.e. less reactive), combustion recession transitions from strong sequential ignition, to weak separated pockets of ignition, and finally to the absence of combustion recession altogether. At ambient conditions that do not favor combustion recession, increasing the end-of-injection transient duration promotes combustion recession. At high temperatures and/or oxygen concentrations, and also with longer end-of-injection transients, soot recession was observed, suggesting a trade-off in the emissions impact of combustion recession. Combustion recession under relatively lean conditions can help to reduce unburned hydrocarbons, but if mixtures are too rich, combustion recession can promote increased soot emissions. A previously developed reduced-order model was also used to provide further insight. The model shows that the shape of the end-ofinjection transient is important. In particular, the minimum pressure at time of needle closing has a strong impact on combustion recession.
机译:最近已被证明注射瞬变对柴油发动机的燃烧和排放结果非常重要。这项工作的目的是了解对注射型叶片或燃烧衰退的混合物中的喷射结束瞬变与二级点火倾向的理解。开发了一种能够改变注射瞬态的注射系统,以在一系列环境条件下研究新委托光学可接近的喷雾室中的单燃料喷雾。同时高速光学诊断,即Schlieren,OH *化学发光和宽带光度,用于表征注射结束后燃烧衰退的空间和时间发育。随着环境条件变得更冷或含有较少的氧气(即较少的反应),从强序列点火的燃烧衰退过渡,以弱分离的点火口袋,最终完全没有燃烧经济衰退。在不赞成燃烧经济衰退的环境条件下,增加注射瞬态持续时间促进燃烧衰退。在高温和/或氧气浓度下,并且还具有较长的注射瞬变,观察到烟灰经济衰退,表明燃烧衰退的排放影响的权衡。相对贫条件下的燃烧经济衰退可以有助于减少未燃烧的碳氢化合物,但如果混合物过于富裕,燃烧经济衰退可以促进烟灰排放增加。先前开发的减少阶模型也用于提供进一步的洞察力。该模型表明,端部 - OFINGERING瞬态的形状很重要。特别地,针闭合时的最小压力对燃烧衰退产生了强烈影响。

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