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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Numerical investigation of a multiple injection strategy on the development of high-pressure diesel sprays
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Numerical investigation of a multiple injection strategy on the development of high-pressure diesel sprays

机译:高压柴油机喷雾发展中多次喷射策略的数值研究

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摘要

Computational fluid dynamics results are presented providing information on the influence of multiple injection strategy on fuel vaporization characteristics under conditions typical of direct injection, turbocharged, high-speed automotive diesel engines. The fuel is assumed to be injected from a high-pressure common rail injector nozzle. Focus is given on the number of multiple injections and dwell-time on the evaporating spray plume development. Comparison between the different cases is performed in terms of liquid and vapour penetration curves, the spatial distribution of the air-fuel equivalence ratio and the fuel vapour spatial distribution difference between the cases considered. The results confirm that, under the operating conditions investigated, the liquid penetration length, known to freeze at a distance from the nozzle exit, is not significantly affected by the injection strategy, while vapour penetration follows the time-shift of the dwell-time. Longer dwell-times retard the diffusion of the vapour in the carrier gas. Although injection of small fuel quantities prior to the main pulse does not affect the liquid penetration, it contributes up to 5 per cent more stoichiometric fuel vapour present in the area of observed auto-ignition sites. Post injection and splitting of the main injection in two pulses modify the vapour distribution by creating two spatially separated fuel-rich zones.
机译:提出了计算流体动力学结果,以提供有关在直接喷射,涡轮增压,高速汽车柴油发动机的典型条件下多次喷射策略对燃料汽化特性的影响的信息。假定燃油是从高压共轨喷油嘴喷出的。重点是多次喷射的次数和蒸发喷雾羽流形成的停留时间。根据液体和蒸汽的渗透曲线,空燃当量比的空间分布以及所考虑的情况之间的燃料蒸气空间分布差异,对不同情况进行比较。结果证实,在所研究的工作条件下,已知的液体渗透长度会在距喷嘴出口一定距离处冻结,而不受注入策略的明显影响,而蒸汽渗透会随停留时间的时移而变化。较长的停留时间会阻止蒸气在载气中的扩散。尽管在主脉冲之前喷射少量的燃料不会影响液体的渗透,但在观察到的自动点火区域内,化学计量的燃料蒸气最多可增加5%。后喷射和主喷射分成两个脉冲,通过创建两个在空间上分隔开的富燃料区来修改蒸气分布。

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