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A Number Size Distribution Moments Based Solid Cone Diesel Spray Model: Assessment of Droplet Breakup Models Based on Different Distribution Functions

机译:基于数量尺寸分布矩的实心锥柴油喷射模型:基于不同分布函数的液滴破碎模型评估

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Creating small sized droplets is the primary reason for using sprays. In high-pressure diesel engine sprays, smaller sized droplets aid the combustion process, thus reducing emissions. Therefore, the adequate representation of the droplet breakup process in diesel engine spray models is essential. Two droplet breakup models have been applied in this study. These models have been developed based on whether the results of the droplet breakup processes have been derived from approximations, using an assumed size distribution function, or based on empirical data, using a gamma size distribution function. The effects of assumptions in the models, such as the number of sibling droplets produced during the breakup process, are also presented. The droplet breakup models have been integrated into a recently developed three moments solid cone diesel spray model in which the complete hydrodynamic characteristics of a spray can be represented by calculating three moments of the droplet-size distribution function from transport equations and one moment from a Gamma size distribution. This is in contrast to many diesel fuel spray models, which determine the spray characteristics by tracking droplet size classes. The results are characterized by the droplet sizes and fuel spray penetration results at different ambient pressure values, and compared with well-characterized experimental data from diesel injection spray cases. The computational expense of the droplet breakup models considered is also evaluated. The results indicate that the predicted results compare well with experimental data and the use of any particular breakup model could be based on the least possible assumptions, the required accuracy and computational expense required to attain these.
机译:产生小液滴是使用喷雾的主要原因。在高压柴油机喷雾中,较小尺寸的液滴有助于燃烧过程,从而减少排放。因此,在柴油发动机喷雾模型中充分体现液滴分解过程至关重要。在这项研究中已经应用了两种液滴破裂模型。这些模型是基于液滴分解过程的结果是使用假定的大小分布函数从近似值得出的,还是使用伽马大小分布函数是根据经验数据得出的。还介绍了模型中假设的影响,例如分解过程中产生的同级液滴的数量。液滴分解模型已集成到最近开发的三矩实心圆锥柴油喷雾模型中,该模型可通过根据输运方程计算三滴液滴尺寸分布函数和从Gamma矩计算出一滴液滴的完整流体力学特性。大小分布。这与许多柴油机喷雾模型相反,后者通过跟踪液滴尺寸等级来确定喷雾特性。该结果的特征在于在不同的环境压力值下的液滴尺寸和燃料喷雾渗透结果,并与来自柴油机喷射喷雾情况的充分表征的实验数据进行了比较。还评估了所考虑的液滴分裂模型的计算费用。结果表明,预测结果与实验数据具有很好的对比,使用任何特定的分解模型都可以基于最少的假设,达到这些要求所需的精度和计算费用。

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