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Numerical Study of Mixture Formation and Combustion Processes in a Direct Injection Gasoline Engine with Fan-shaped Spray

机译:具有扇形喷涂的直喷汽油发动机混合物形成和燃烧过程的数值研究

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Numerical 3-D simulations are performed for the improvement of the new direct injection gasoline engine. A solution based local grid refinement method has been developed in order to reduce the CPU time. This method has been incorporated into the CFD program (STAR-CD) with in-house spray and combustion models. Calculation results were compared with the experimental data taken by the LIF technique, and good agreement was obtained for the mixture formation and combustion processes. Some calculations were carried out for the fuel-air mixture formation process during late injection stratified combustion and the following results were obtained. The unburnt fuel has a tendency to remain in the side of the piston cavity at the latter part of the combustion period. To reduce the amount of unburnt fuel, it was shown that the combination of a thin thickness fan spray and compact cavity forms a spherical mixture, suitable for combustion.
机译:对新型直喷式汽油发动机的改进进行了数值3-D模拟。已经开发了基于解决的本地网格精制方法,以减少CPU时间。该方法已纳入CFD程序(星形CD),内部喷雾和燃烧模型。将计算结果与LiF技术采集的实验数据进行比较,并为混合物形成和燃烧过程获得了良好的一致性。对后期注射分层燃烧期间的燃料 - 空气混合物形成过程进行了一些计算,得到以下结果。 Unburnt燃料在燃烧时段的后半部分处存在倾向于保留在活塞腔的侧面。为了减少未燃烧燃料的量,表明薄厚度风扇喷雾和紧凑型腔的组合形成球形混合物,适用于燃烧。

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