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An Experimental Investigation on the Evaporation Characteristics of a Two-Component Fuel in Diesel-Like Sprays

机译:柴油样喷雾中二元燃料蒸发特性的实验研究

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Tailor-made multi-component fuels are currently being developed for advanced Diesel engines. Accordingly, there is renewed interest in the detailed evaporation characteristics of such multi-component fuels, in particular because soot formation in reacting Diesel sprays generally depends on the mixture formation upstream of the lift-off location. It is also well established that fuel components with different volatility are generally not coevaporative due to fractional distillation in the mixture formation process of spark-ignition engines, but it is not clear if this holds for Diesel-like sprays, in which evaporation and mixing are expected to be more rapid. Unfortunately, little work has been done in this field, and some of the previous results appear to be contradictory. This paper presents a new laser diagnostic approach, which yields the vapor-phase concentrations of two fuel components simultaneously in Diesel-like sprays. Thus, preferential evaporation of different fuel components can be studied for two-component fuels, namely mixtures of an alkane and an alcohol (without any additives). This technique is first applied to a mixture of ethanol and isooctane, because the evaporation of these two components was found to be significantly different in Diesel-like single-component fuel sprays previously. Thus, preferential evaporation might be expected particularly for the isooctane-ethanol blend. However, the results show that these components are essentially coevaporative in the investigated Diesel-like sprays. The new diagnostic approach is based on 1-d spontaneous Raman scattering. It is described in detail in the paper. This technique also yields the total stoichiometric ratio and the temperature in the vapor phase, so that the air-fuel mixture can be characterized more completely. The measurements are conducted in a high-temperature, high-pressure vessel under approximately engine-relevant conditions. The investigated Diesel-like sprays are emanating from a state-of-the-art piezo injector. The fuel-rail pressure and injection duration are varied. The results also lead to conclusions on soot formation in Diesel-like sprays.
机译:目前正在为高级柴油发动机开发量身定制的多组分燃料。因此,人们对这种多组分燃料的详细蒸发特性有了新的兴趣,特别是因为反应的柴油喷雾中的烟灰形成通常取决于提离位置上游的混合物形成。众所周知,在火花点火发动机的混合气形成过程中,由于分馏,具有不同挥发性的燃料成分通常不会共蒸发,但是尚不清楚这是否适用于柴油样喷雾剂,在该喷雾剂中蒸发和混合是预计会更快。不幸的是,在该领域几乎没有做任何工作,并且先前的一些结果似乎是矛盾的。本文提出了一种新的激光诊断方法,该方法可在类柴油喷雾中同时产生两种燃料成分的汽相浓度。因此,对于二组分燃料,即烷烃和醇(没有任何添加剂)的混合物,可以研究不同燃料组分的优先蒸发。这项技术首先应用于乙醇和异辛烷的混合物,因为之前发现这两种组分的蒸发在​​类似柴油的单组分燃油喷雾器中明显不同。因此,特别是对于异辛烷-乙醇共混物,可能期望优先蒸发。但是,结果表明,这些成分在所研究的柴油样喷雾剂中基本上是共蒸发的。新的诊断方法基于一维自发拉曼散射。本文对此进行了详细描述。该技术还产生了总化学计量比和气相温度,从而可以更完全地表征混合气。测量是在高温高压容器中,大约在与发动机相关的条件下进行的。所研究的柴油样喷雾剂来自最先进的压电喷射器。燃油导轨压力和喷射持续时间会有所不同。该结果还得出关于柴油样喷雾剂中烟灰形成的结论。

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