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Partially Stratified Charge, LES, ICE, Turbulent Combustion

机译:部分分层充电,LES,冰,湍流燃烧

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The mechanical-hydraulic behavior of the nozzle and the features of the internal flow are two fundamental factors in the spray formation process. In the current multi-injection strategies, short injections with reduced values of the needle lift are usual. In these cases, the nozzle can give rise to abnormalities in spray development, highlighted by irregularities and asymmetries. The main hole to hole differences are encountered in the rate of injection, in the spray shape and in the atomization process. The off-axis of the needle, the characteristics of the volume upstream of the holes and their geometry play a key role in causing such anomalies. In the paper, an unconventional VCO nozzle layout has been defined and analyzed by modeling. The study is oriented at evaluating its capability on reducing the dispersion among the flow features of the holes, when the pure axial needle displacement is perturbed. The investigated nozzle is based on a multihole layout but, referring to the injector axis, nozzle holes have a non-radial arrangement. In comparison with the standard VCO nozzle configuration, 3D-CFD simulations have been devoted to highlight the influence of the alternative nozzle layout on the internal flow and on the resulting spray features in the external ambient. In the modelling process, data concerning rate of injection, spatial distribution of velocity and cavitation behaviour at hole exit have been computed; specific attention has been focused on the fuel flow distribution among the holes; the computations have evidenced the behaviour of the unconventional layout when off-axis needle displacement is considered. Results have been resumed indicating how the internal flow pattern properties are reflected by the spray features.
机译:喷嘴的机械液压行为和内部流量的特征是喷雾形成过程中的两个基本因素。在目前的多喷射策略中,通常具有减小的针升降值的短喷射。在这些情况下,喷嘴可以产生喷雾发育的异常,突出的是不规则性和不对称的。在喷射形状和雾化过程中,遇到孔差的主孔差异差异。针的偏离轴,孔上游的体积的特性及其几何形状在引起这种异常时发挥着关键作用。在本文中,通过建模定义和分析了一个非常规vco喷嘴布局。当纯轴向针位移被扰乱时,该研究在评估其降低孔的流动特征之间的分散性的能力。研究的喷嘴基于多孔布局,但是参考喷射器轴线,喷嘴孔具有非径向布置。与标准VCO喷嘴配置相比,已经致力于突出3D-CFD仿真以突出替代喷嘴布局对内部流动的影响以及外部环境中所产生的喷射特征。在建模过程中,已经计算了注射率的数据,孔出口处的速度和空化行为的空间分布;具体的注意力集中在孔中的燃料流量分布上;计算已经证明了当考虑轴外针位移时非常规布局的行为。结果恢复了表明内部流动模式属性如何被喷射特征反映。

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