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首页> 外文期刊>Renewable Power Generation, IET >Evaporation and mixture formation of gasoline–ethanol sprays in spark ignition engines with pre-blended injection and dual injection: a comparative study
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Evaporation and mixture formation of gasoline–ethanol sprays in spark ignition engines with pre-blended injection and dual injection: a comparative study

机译:蒸发和混合在火花点火发动机中形成汽油 - 乙醇喷雾,预混注射和双注射:对比研究

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摘要

Evaporation of sprays and mixture formation as injection of pre-blended gasoline-ethanol mixture and as separate injection of the fuels are investigated by means of numerical simulation. Effects of operating conditions and different configurations of injection systems have been examined. Under the same operating conditions, pure gasoline mostly evaporated during the injection period, while pure ethanol evaporated mainly during the compression process. Charge temperature in the cylinder for pure ethanol is approximate to 60 degrees C lower than that for pure gasoline at the end of the compression process. Independently from injection system, the dual injection results in a higher evaporation rate compared to pre-blended injection. Whether pre-blended injection or dual injection is employed, the evaporation rate is improved for port injection (PI) compared to direct injection (DI). Besides, vapour concentration at the end of the compression process of PI increases with a shift from a single-inlet manifold to double-inlet manifolds. Mixture homogeneity is enhanced with increasing ambience temperature or/and an increasing engine speed with pre-blended injection, while a strong stratified charge mixture is achieved with dual injection using double-inlet manifolds or with DI of ethanol combined with PI of gasoline.
机译:通过数值模拟研究了作为注射预混汽油 - 乙醇混合物的喷雾和混合物形成作为预混合的汽油 - 乙醇混合物的混合物的形成,并作为单独注射燃料。检查了操作条件的影响和不同的注射系统配置。在相同的操作条件下,纯汽油在注射期间主要蒸发,而纯乙醇主要在压缩过程中蒸发。用于纯乙醇的气缸中的电荷温度近似为60℃,比压缩过程结束时的纯汽油低60℃。与注射系统无关,与预混注射相比,双注射率导致更高的蒸发速率。与直接喷射(DI)相比,对端口注射(PI)有改善蒸发速率是否改善了蒸发速率。此外,PI的压缩过程结束时的蒸气浓度随从单入入口歧管到双入口歧管的偏移而增加。随着环境温度的增加或/和增加的发动机速度,具有预混合注射的增加的混合物均匀性增强,而使用双口歧管或使用双口腔或用乙醇与汽油的PI合并,使用双注射进行强分层电荷混合物。

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