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The Influence of Diesel End-of-Injection Rate Shape on Combustion Recession

机译:柴油机注射率形状对燃烧衰退的影响

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The effect of the shape of the EOI was investigated through a pressure-modulated injection system in order to improve the understanding of the last portion of the traditional diesel diffusion combustion process. Here, the combustion recession at EOI is when the combustion of a mixing controlled diesel jet recedes backwards toward the fuel injector nozzle orifice. Combustion recession was observed using combustion luminosity imaging filtered at 309 nm to capture OH* chemiluminescence and 430 nm to capture CH* chemiluminescence, although soot Natural Luminosity (NL) will also be visible in these measurements. Experimental spray vessel results show that for relatively slow EOI decelerations below 1 ×10~6 to 2 ×10~6 m/s~2, combustion strongly recesses completely back to the nozzle in both OH* and CH*/NL imaging. 1-D jet mixing calculations add support that this strong recession is indeed fuel rich. Ambient temperature (860 to 915K range) and dilution (18.5 to 20.9% O_2 range) influence the weaker combustion recession, mainly for OH* chemiluminescence imaging. The influence of temperature variation is stronger than the influence of dilution variation over the present ranges. Weak combustion recession under high EOI deceleration conditions shows only OH* recession, as characterized by temporal LOL analyses, with an absence of significant CH*/NL combustion recession. Additionally, the strength of the combustion recession can be inversely ordered by EOI deceleration for a given ambient condition. Rate shape and EOI deceleration had a stronger influence on combustion recession behavior than ambient conditions. The link between combustion recession at EOI and engine emissions is further discussed with multiple hypotheses proposed.
机译:通过压力调制的注射系统研究了EOI形状的效果,以改善对传统柴油扩散燃烧过程的最后一部分的理解。这里,EOI的燃烧衰减是当混合控制的柴油喷射器的燃烧时向后朝向燃料喷射器喷嘴孔后退。使用在309nm下过滤的燃烧亮度成像观察燃烧衰减,以捕获OH *化学发光和430nm以捕获CH *化学发光,但在这些测量中也可见烟灰天然亮度(NL)。实验喷雾容器结果表明,对于相对缓慢的EOI减速,低于1×10〜6至2×10〜6 m / s〜2,燃烧在OH *和CH * / NL成像中完全凹陷完全返回喷嘴。 1-D喷射混合计算增添了这种强劲的经济衰退确实是富有燃料的。环境温度(860至915K范围)和稀释(18.5至20.9%O_2范围)影响较弱的燃烧经济衰退,主要用于OH *化学发光成像。温度变化的影响比本行范围对稀释变化的影响力强。在高EOI减速条件下的弱燃烧经济衰退仅显示OH *衰退,其特征在于颞λ分析,没有显着的CH * / NL燃烧经济衰退。另外,燃烧衰退的强度可以通过eoi减速来对给定的环境条件进行终反排序。速率形状和EOI减速对燃烧衰退行为的影响力比环境条件更强。 EOI和发动机排放之间的燃烧衰退之间的联系进一步与提出的多个假设讨论。

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