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Effects of inversed-delta injection rate shaping on diesel spray flame liquid length, lift-off length and soot onset

机译:反三角喷射速率整形对柴油机喷雾火焰长度,提离长度和烟尘起发的影响

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摘要

In this paper, effects of continuous injection rate ramp-down (i.e., "inversed-delta" injection rate shaping) on liquid length, lift-off length and soot onset of diesel spray flame are investigated for better understanding of its combustion characteristics. Time-sequence images of the diesel spray flame are acquired in a constant volume combustion vessel CVCC using a novel TAIZAC injector. One-dimensional modeling is performed to discuss the air entrainment and mixture distributions. During the injection period, no systematic trend is observed on the liquid and lift-off length for any injection profiles. Contrarily, the soot onset for the inversed-delta injection progressively recedes towards the nozzle while it appears constant for the conventional "rectangle" injection. After the end-of-injection EOI, the fuel vaporization and combustion recession occur at a faster rate in the rectangle injection proportional to its injection pressure, possibly due to stronger and faster entrainment waves than that of the inversed-delta injection. From 1D simulation, the liquid length and spray equivalence ratio distributions stratified "layer" seems to be continuously shifted upstream during the injection period in the inversed-delta injection. It is interesting to note that the centerline equivalence ratio value of phi(cl) = 2 correlate well with the soot onset observed experimentally, suggesting that the air entrainment per injected fuel could likely be promoted during injection period in the inversed-delta injection.
机译:在本文中,为了更好地了解其喷射特性,研究了连续喷射速率下降(即“反三角”喷射速率整形)对柴油喷雾火焰的液体长度,升起长度和烟灰开始的影响。使用新型TAIZAC喷油器,在恒定体积的燃烧容器CVCC中获取柴油机喷射火焰的时间序列图像。进行一维建模以讨论空气夹带和混合物分布。在进样期间,对于任何进样曲线,在液体和提离长度上均未观察到系统趋势。相反,反三角喷射的烟灰开始逐渐向喷嘴后退,而对于常规的“矩形”喷射则显得恒定。在喷射结束EOI之后,矩形喷射中的燃料汽化和燃烧后退以与其喷射压力成正比的更快速度发生,这可能是由于夹带波比倒三角形喷射的夹带波越来越大。从一维模拟来看,在反三角喷射的喷射期间,分层的“层”的液体长度和喷射当量比分布似乎在上游连续移动。有趣的是,phi(cl)= 2的中心线当量比值与实验观察到的烟尘起效良好相关,这表明在反增量喷射过程​​中,在喷射期间可能会促进每次喷射燃料的空气夹带。

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