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Effect of two-stage injection on unburned hydrocarbon and carbon monoxide emissions in smokeless low-temperature diesel combustion with ultra-high exhaust gas recirculation

机译:两级喷射对超高废气再循环无烟低温柴油燃烧中未燃烧碳氢化合物和一氧化碳的影响

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摘要

The unburned hydrocarbon (UHC) and carbon monoxide (CO) emissions from smokeless low temperature diesel combustion (LTC) with ultra-high exhaust gas recirculation (EGR) can be attributed to lowered combustion temperatures as well as to under-mixing of fuel-rich mixture along the combustion chamber walls, overly-mixed fuel-lean mixture at the spray tails, and fuel missing the piston bowl and entering the squish zones. Two-stage injection has the potential to reduce UHC and CO emissions through decreasing the ratios of these mixtures. This study investigates the effects of two-stage fuel injection by varying the dwell between the two injections as well as the fuel quantity in each injection on the UHC and CO emissions, experimentally with a single cylinder diesel engine. With the optimized dwell and injection ratio, two-stage injection can reduce the UHC and CO emissions, but these emissions are still at high levels in the ultra-high EGR smokeless LTC regime. Computational fluid dynamics simulations of the in-cylinder spray and mixture formation processes showed that with the two-stage injection, over-rich mixture in the squish zones can be significantly avoided but the over-lean mixtures at center of the combustion chamber are little reduced, and these would likely be a significant source of UHC and CO emissions.
机译:无烟低温柴油燃烧(LTC)和超高废气再循环(EGR)产生的未燃烧碳氢化合物(UHC)和一氧化碳(CO)排放可归因于燃烧温度降低以及富燃料混合不足沿燃烧室壁的混合气,在喷射尾部混合的贫油混合气以及缺少活塞碗并进入挤压区的燃料。两阶段注入有可能通过降低这些混合物的比例来减少UHC和CO排放。这项研究通过使用单缸柴油机,通过改变两次喷射之间的停留时间以及每次喷射中的燃料量对UHC和CO排放的影响,研究了两阶段燃料喷射的影响。通过优化的停留时间和喷射比,两阶段喷射可以减少UHC和CO排放,但是在超高EGR无烟LTC方案中,这些排放仍处于高水平。缸内喷雾和混合气形成过程的计算流体动力学模拟表明,采用两阶段喷射,可以显着避免挤压区域内的过浓混合气,但燃烧室中心的过稀混合气几乎没有减少,这很可能是UHC和CO排放的重要来源。

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