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首页> 外文期刊>International journal of engine research >Quantitative measurements of preferential evaporation effects of multicomponent gasoline fuel sprays at ECN Spray G conditions
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Quantitative measurements of preferential evaporation effects of multicomponent gasoline fuel sprays at ECN Spray G conditions

机译:ECN喷雾G条件下多组分汽油燃料喷雾优先蒸发效应的定量测量

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摘要

A two-tracer laser-induced fluorescence technique is used to quantify the effects of preferential evaporation of multicomponent fuels on the fuel component distribution. The technique is based on the simultaneous detection of the fluorescence of two aromatic tracers with complementary evaporation characteristics matched to different components of a multicomponent fuel. Relative variations in the spatial distribution of tracer distribution as a consequence of preferential evaporation are determined from the ratio of laser-induced fluorescence signals measured within two distinct spectral bands. A thermodynamic model is then used to relate the ratio map with the fuel component map. The accuracy and precision of the method are characterized from determining the laser-induced fluorescence signal ratio within two identical spectral bands. Measurements are performed in a high-pressure high-temperature vessel equipped with an eight-hole injector. The Engine Combustion Network Spray G target conditions are chosen as reference conditions at injection. The only difference with these target conditions is the use of a multicomponent surrogate fuel. Parametric variations around these target conditions are also performed in order to investigate their effect on the preferential evaporation effect. The ambient temperature is varied between 525 and 625?K and the injection pressure is reduced from 200 to 100?bar. The impact of ethanol addition is also studied with two different fuel mixtures in addition to the reference surrogate fuel: E20 and E85 which feature 20% and 85% of pure ethanol within surrogate, respectively. A significant preferential evaporation effect is observed in this condition representative of engine applications and results in a spatial segregation between low- and high-volatility fuel components, respectively, at the tail and tip of the plumes. This effect is enhanced by the addition of ethanol and the decrease in ambient temperature and injection pressure.
机译:双跟踪激光诱导的荧光技术用于量化优先蒸发多组分燃料对燃料分布的影响。该技术基于同时检测与多组分燃料的不同组分匹配的互补蒸发特性的两个芳族示踪剂的荧光。根据优先蒸发的基于优先蒸发的比率确定示踪剂分布的空间分布的相对变化是根据在两个不同的光谱带内测量的激光诱导的荧光信号的比率确定。然后使用热力学模型与燃料分量图递交比率图。该方法的准确性和精度的特征在于在两个相同的光谱带内确定激光诱导的荧光信号比。测量在配备有八孔注射器的高压高温容器中进行。选择发动机燃烧网络喷雾G目标条件作为注射时的参考条件。与这些目标条件的唯一差异是使用多组分代理燃料。还进行了这些目标条件的参数变化,以便研究它们对优先蒸发效果的影响。环境温度在525和625·k之间变化,并且喷射压力从200到100°减小。除了参考蛋白质燃料外,还使用两种不同的燃料混合物进行乙醇添加的影响:E20和E85,其分别在替代物中分别为20%和85%的纯乙醇。在该发动机应用的该条件下观察到显着优先蒸发效果,并在羽柱的尾部和尖端处分别在低挥发性燃料分量之间产生空间偏析。通过加入乙醇和环境温度和注射压力降低,这种效果增强。

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