首页> 外文会议>ASME Internal Combustion Engine Division fall technical conference 2010 >Investigation of Ethanol Spray from Different Dl Injectors by Using Two-Dimensional Laser Induced Exciplex Fluorescence at Potential Cold-Start Condition
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Investigation of Ethanol Spray from Different Dl Injectors by Using Two-Dimensional Laser Induced Exciplex Fluorescence at Potential Cold-Start Condition

机译:在潜在的冷启动条件下,使用二维激光诱导的激发复合荧光研究不同Dl喷射器喷洒的乙醇

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The spray evaporation of gasoline and ethanol fuel was investigated qualitatively through the use of the planar laser induced exciplex fluorescence (PLIEF) technique in a constant volume chamber. The effect of fuel temperature and ambient pressure on spray evaporation was identified over a range of conditions. Both a swirl injector and a multi-hole injector were examined for each of the two fuels. A coevaporative mixture of benzene and triethylamine (TEA) was used as a fluorescent seeding material to study the evaporation processes of ethanol fuel. A mixture of fluorobenzene (FB) and diethylmethylamine (DEMA) in n-hexane, which has been proved to be a suitable seeding material for LIEF measurement, allowed for the investigation of the evaporation processes of gasoline fuel mixture. Remarkable spray evaporation processes were observed for both gasoline and ethanol fuel by increasing fuel temperature or by reducing ambient pressure to a vacuum. Especially after achieving flash-boiling, the vapor distribution of multi-plume spray increases dramatically, and the vapor phase of spray from swirl injector gathers to the centerline of injector by increasing the superheated degree. The collapsing of both liquid and vapor phases of n-hexane is stronger than that of ethanol spray for both swirl and multi-hole injectors.
机译:通过在恒定容积室内使用平面激光诱导的激基复合物荧光(PLIEF)技术定性研究了汽油和乙醇燃料的喷雾蒸发。在一定条件下确定了燃料温度和环境压力对喷雾蒸发的影响。对两种燃料中的每一种都检查了旋流喷射器和多孔喷射器。苯和三乙胺(TEA)的共蒸发混合物用作荧光种子材料,以研究乙醇燃料的蒸发过程。氟苯(FB)和二乙基甲胺(DEMA)在正己烷中的混合物已被证明是用于LIEF测量的合适种子材料,可用于研究汽油混合物的蒸发过程。通过提高燃料温度或将环境压力降低至真空,可观察到汽油和乙醇燃料都有明显的喷雾蒸发过程。特别是在实现闪蒸之后,多雾状喷雾的蒸气分布急剧增加,并且通过增加过热度,来自旋流喷射器的喷雾的蒸气相聚集到喷射器的中心线。对于旋流和多孔进样器,正己烷的液相和气相的崩溃都比乙醇喷雾的崩溃更强。

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