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An experimental analysis on the evolution of the transient tip penetration in reacting Diesel sprays

机译:反应柴油机喷头瞬态尖端渗透演变的实验分析

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Schlieren imaging has helped deeply characterize the behavior of Diesel spray when injected into an oxygen-free ambient. However, when considering the transient penetration of the reacting spray after autoignition, i.e. the Diesel flame, few studies have been found in literature. Differences among optical setups as well as among experimental conditions have not allowed clear conclusions to be drawn on this issue. Furthermore, soot radiation may have a strong effect on the image quality, which cannot be neglected. The present paper reports an investigation on the transient evolution of Diesel flame based upon schlieren imaging. Experimental conditions have spanned values of injection pressure, ambient temperature and density for typical Diesel engine conditions. An optimized optical setup has been used, which makes it possible to obtain results without soot interference. Based on observations for a long injection event (4 ms Energizing Time), the analysis has resorted to extensive comparison of inert and reacting sprays parameters, which have made it possible to define different phases after autoignition.Shortly after autoignition, axial and radial expansion of the spray have been observed in terms of tip penetration and radial cone angle. After that, during a stabilization phase, the reacting spray penetrates at a similar rate as the inert one. Later, the reacting spray undergoes an acceleration period, where it penetrates at a faster rate than the inert one. Finally, the flame enters a quasi-steady penetration phase, where the ratio of reacting and inert penetration stabilizes at a nearly constant value. The duration of the reacting spray penetration stages shows modifications when varying engine parameters such as air temperature, air density, injection pressure, and nozzle diameter. However, the proportionality between reacting and inert penetration has been observed to depend mainly on temperature, in agreement with observed reductions in entrainment when shifting from inert to reacting conditions.
机译:Schlieren成像有助于深入表征柴油喷雾在无氧环境中的喷射行为。然而,当考虑自燃后反应喷雾的瞬时渗透,即柴油火焰,文献中很少有研究发现。光学装置之间以及实验条件之间的差异无法就此问题得出清晰的结论。此外,烟尘辐射可能会对图像质量产生强烈影响,这是不能忽略的。本文报道了基于schlieren成像的柴油火焰瞬态演变研究。对于典型的柴油机条件,实验条件具有跨度的喷射压力,环境温度和密度值。使用了优化的光学设置,可以获得无烟尘干扰的结果。基于对长时间喷射事件(4 ms通电时间)的观察,该分析对惰性和反应喷雾参数进行了广泛比较,这使得自燃后定义不同的相成为可能。已经从尖端穿透和径向锥角观察到喷雾。之后,在稳定阶段,反应喷雾以与惰性喷雾相似的速率渗透。后来,反应喷雾经历了加速期,在此期间它以比惰性喷雾更快的速度渗透。最后,火焰进入准稳态渗透阶段,在该阶段,反应渗透与惰性渗透的比率稳定在几乎恒定的值。当改变发动机参数,例如空气温度,空气密度,喷射压力和喷嘴直径时,反应性喷雾渗透阶段的持续时间会显示出变化。然而,已经观察到反应和惰性渗透之间的比例主要取决于温度,这与从惰性条件转变为反应条件时所观察到的夹带减少一致。

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