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首页> 外文期刊>International Journal of Spray and Combustion Dynamics >Analysis of ethanol and butanol direct-injection spark-ignition sprays using two-phase structured laser illumination planar imaging droplet sizing
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Analysis of ethanol and butanol direct-injection spark-ignition sprays using two-phase structured laser illumination planar imaging droplet sizing

机译:用两相结构激光照明平面成像液体施胶分析乙醇和丁醇直喷火花点火喷射

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This paper reports on the spray structure of the biofuels,ethanol,and butanol generated by a multihole direct-injection spark-ignition injector,which is studied in a constant volume chamber.The spray shape and structure are analyzed using two-phase structured laser illumination planar imaging where both laser-induced fluorescence and Mie-scattering light are recorded simultaneously for the extraction of instantaneous laser-induced fluorescence/Mie-scattering ratio images.Quantitative planar measurements of the droplet Sauter mean diameter are conducted,using calibration data from phase-Doppler anemometry.The resulting Sauter mean diameters are presented for ethanol and butanol at various fuel temperatures at different times after the start of injection.It is found that an increase in fuel temperature results in a faster atomization and higher evaporation rate,which leads to reduced spray tip penetration and smaller droplet Sauter mean diameter.At equivalent conditions,butanol consistently showed larger spray tip penetration in comparison to ethanol.This behavior is due to the higher surface tension and viscosity of butanol resulting in the formation of larger droplets and larger Sauter mean diameters in the whole spray region.Finally,the butanol injection also shows larger cyclic variations in the spray shape from injection to injection which is explained by the internal nozzle flow that is influenced by larger fuel viscosity as well.The Sauter mean diameter distribution is also compared to phase-Doppler anemometry data showing good agreement and an uncertainty analysis of the structured laser illumination planar imaging-laser-induced fluorescence/Mie-scattering technique for planar droplet sizing in direct-injection spark-ignition sprays is presented.
机译:本文报告了由多孔直喷火花点火喷射器产生的生物燃料,乙醇和丁醇的喷雾结构,其在恒定体积室中研究。使用两相结构激光照明分析喷雾形状和结构平面成像,其中激光诱导的荧光和mie散射光同时记录用于提取瞬时激光诱导的荧光/ mIe散射比图像。使用校准数据从相位校准数据进行液滴燃烧器平均直径的定量平面测量。多普勒式风速度。所得燃烧器平均直径在注射开始后在不同时间的各种燃料温度下呈现乙醇和丁醇。发现燃料温度的增加导致更快的雾化和更高的蒸发速率,这导致减少喷雾尖端渗透和较小的液滴落叶刀平均直径。当量条件下,丁醇是成功的与乙醇相比显示出较大的喷雾尖端渗透。该行为是由于丁醇的表面张力和粘度较大,导致整个喷雾区域中形成较大的液滴和较大的汽油平均直径。最后,丁醇注射也显示出更大的喷射形状的循环变化从注射喷射到注射的内部喷嘴流量也通过较大燃料粘度影响的内部喷嘴流解释。燃烧器平均直径分布也与相位多普勒式水平数据进行比较,显示良好的一致性和不确定分析提出了用于直喷火花点火喷雾的平面液滴施加的结构化激光照明平面成像激光诱导的荧光/ MIE散射技术。

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