首页> 外文会议>JSAE/SAE International Fuels and Lubricants Meeting >Effects of CO{sub}2 and N{sub}2 Mixing Into Ambient Air on Flame Temperature and Soot Formation in Intermittent Spray Combustion
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Effects of CO{sub}2 and N{sub}2 Mixing Into Ambient Air on Flame Temperature and Soot Formation in Intermittent Spray Combustion

机译:Co {uS} 2和N} 2的影响在间歇喷涂燃烧中对火焰温度和烟尘形成的影响

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In order to study the effects of EGR on diesel combustion fundamentally, the effects of CO{sub}2 and N{sub}2 mixing into ambient air on intermittent spray combustion were examined experimentally. Under the same condition of ambient temperature and pressure, and the same injection pressure, the rates of CO{sub}2 or N{sub}2 mixing were changed from 0 to 15% and the combustion characteristics of diesel spray were examined. Through the systematic experiments, it was explored that the ignition delay and the combustion period became longer with the increase of CO{sub}2 and N{sub}2 mixing, and the effect was larger in the case of CO{sub}2 mixing. The flame temperature became lower with the N{sub}2 mixing mainly due to the dilution effect. In the case of CO{sub}2 mixing, the flame temperature decreased notably, and the flame region with higher temperature became very small. The reason of this tendency was attributed to the dilution effect, the higher heat capacity of CO{sub}2 and the chemical effect of CO{sub}2. Though the combustion delayed and the combustion temperature became lower with the CO{sub}2 mixing, the amount of soot in flame did not change so much.
机译:为了从根本上研究EGR对柴油燃烧对柴油燃烧的影响,实验研究了CO {uS} 2和N {u} 2对间歇喷雾燃烧环境空气的影响。在环境温度和压力的相同条件下,与相同的注射压力相同,CO {亚} 2或N×{Sub} 2混合的速率从0变为15%,并检查柴油喷雾的燃烧特性。通过系统实验,探讨了CO {SUB} 2和N {SUB} 2的增加,点火延迟和燃烧时段变长,并且在CO {SUB} 2混合的情况下效果更大。用n {亚} 2混合,火焰温度较低,主要是由于稀释效果。在CO {SUB} 2混合的情况下,火焰温度尤其减小,并且具有较高温度的火焰区域变得非常小。这种趋势的原因归因于稀释效应,Co {亚} 2的较高热容量以及Co {Sub} 2的化学效果。虽然燃烧延迟并且燃烧温度与CO {亚} 2混合变低,但火焰中的烟灰量并没有变化。

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