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A Comparison of Single Shot Diesel Spray Combustion Emissions with Trends Predicted by a Conceptual Model

机译:单发柴油机喷雾燃烧排放与概念模型预测趋势的比较

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摘要

Results from a unique experimental system that quantifies combustion products from a single diesel combustion event are presented and the implications of these results are discussed. Data presented in this paper are the emission levels for carbon monoxide and nitric oxide, normalized by carbon dioxide produced, as a function of fuel quantity injected. Carbon monoxide is notably present in very short duration (or small mass) injection burns where the spray event concludes before the beginning of the major heat release. However, the trend for NO emission levels appears to be influenced by the interaction of combustion with injection. For events with an overlap between injection and the combustion event, reduced NO emission levels are observed. Examination of data from engines indicates a similar trend in NO emission behavior; residence time effects and/or entrainment of post combustion gases into the fuel jet are hypothesized as the physical mechanisms that explain the overall emission behavior.
机译:提出了一个独特的实验系统的结果,该系统量化了单个柴油燃烧事件的燃烧产物,并讨论了这些结果的含义。本文提供的数据是一氧化碳和一氧化氮的排放水平,该水平通过所产生的二氧化碳进行归一化,作为所注入燃料量的函数。一氧化碳特别是在很短的持续时间(或小质量)的喷射燃烧中存在,在喷射过程中主要的热释放开始之前就已经结束了。但是,NO排放水平的趋势似乎受到燃烧与喷射相互作用的影响。对于喷射和燃烧事件之间重叠的事件,观察到NO排放水平降低。对发动机数据的检查表明,NO排放行为具有相似的趋势。停留时间效应和/或燃烧后气体进入燃料喷嘴的夹带被认为是解释总体排放行为的物理机制。

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