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An evaluation of a composite model for predicting drop- drop collision outcomes in multidimensional spray computations

机译:复合模型的评价,用于预测多维喷射计算中掉落碰撞结果的复合模型

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The standard model for predicting the outcome of drop- drop collisions in sprays is one developed based on measurements in rain drops under atmospheric pressure conditions. This model includes the possible outcomes of grazing collisions and coalescence. Recent measurements with hydrocarbon drops and at higher pressure (up to 12 bar) indicate the possibility of additional outcomes: bounce, reflexive separation and drop shattering. The measurements also indicate that the Weber number range over which bounce occurs is dependent on the gas pressure. The probability of a drop-drop collision resulting in bounce increases with gas pressure. A composite model that includes all these outcomes as possibilities is employed to carry out computations in a constant volume chamber and in a diesel engine. A sub-model for bounce that includes the pressure effects is also part of the composite model. Comparisons of results obtained with the composite model are compared with those obtained with the standard model. Sauter-mean-diameter variations and mixing characteristics are studied under non-vaporizing, vaporizing and combustion conditions. It is shown that the probability of coalescence is noticeably reduced with the new model compared to the model based on the work of Brazier-Smith et al.
机译:预测喷雾中掉落碰撞结果的标准模型是基于大气压力条件下的雨滴的测量开发的模型。该模型包括放牧碰撞和聚结的可能结果。最近用碳氢化合物滴和更高的压力(最多12巴)的测量结果表明了额外的结果的可能性:反射,反射分离和丢碎。测量还表明反弹发生的韦伯数范围取决于气体压力。导致反弹碰撞的概率随气体压力而增加。包括所有这些结果作为可能性的复合模型用于在恒定容积室和柴油发动机中执行计算。包括压力效应的反弹的子模型也是复合模型的一部分。将使用复合模型获得的结果比较与标准模型获得的结果进行比较。在非蒸发,汽化和燃烧条件下研究了脱色型直径的变化和混合特性。结果表明,与基于Brazier-Smith等人的工作相比,新型模型显着减少了聚结的概率。

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