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Diesel combustion: In-cylinder NO concentrations in relation to injection timing

机译:柴油燃烧:缸内NO浓度与喷射正时的关系

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This paper presents local experimental in-cylinder concentrations of nitric oxide, obtained by laser-induced fluorescence measurements in a heavy-duty diesel engine. Quantitative concentration histories during the entire combustion stroke are shown for a number of fuel injection timings. Using images from high-speed combustion visualization experiments, the presence of the diffusion flame is related to the onset of NO formation within the laser probe volume. Further attention is paid to the possible NO formation mechanisms. Off-line characterization of the fuel sprays by means of Schlieren imaging reveals that the initial (premixed) combustion is too fuel-rich for thermal (Zeldovich) NO formation. Furthermore, the experimental NO concentrations are compared to numerical calculations of the thermal NO formation during the mixing-controlled combustion phase. The agreement between model and experiments suggests that the thermal mechanism is the major NO formation pathway. However, it cannot be excluded that transport to the probe volume of early NO, formed under conditions where the thermal mechanism is ineffective, might be of some importance as well.
机译:本文介绍了在重型柴油机中通过激光诱导的荧光测量获得的一氧化氮的本地缸内实验浓度。显示了整个燃烧冲程中许多燃料喷射正时的定量浓度历史。使用来自高速燃烧可视化实验的图像,扩散火焰的存在与激光探针体内NO的生成有关。进一步关注可能的NO形成机理。通过Schlieren成像技术对燃油喷雾进行离线表征表明,初始(预混合)燃烧的燃油太浓,无法形成热(Zeldovich)NO。此外,将实验NO浓度与混合控制燃烧阶段热NO生成的数值计算进行了比较。模型和实验之间的一致性表明,热机理是主要的NO形成途径。但是,不能排除在热机制无效的条件下将早期NO转运到探针体积中的作用也很重要。

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