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Modelling of Droplet Deformation and Breakup

机译:液滴变形和破裂的建模

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The present paper addresses the macroscopic atomization characteristics of liquid-fuel droplets when subjected to the influence of a high velocity air crossflow. A breakup model is conceived by using a set of correlations available in the literature with the purpose of replicating such phenomena. The computational results are compared against experimental data to validate the model. The results show a reasonable agreement between measurements and predictions in both qualitative and quantitative outcomes evaluated, which sustain the mathematical formulation adopted. However, further improvements may be aspired given the fact that there is a lack of experimental data available when shearing effects come into play in the mechanisms occurring during the atomization process. On the other hand, the use of two fuels (diesel and bio-diesel) allowed to perceive a relevant impact of the liquid properties (particularly surface tension and viscosity) in the characteristics of the fragments resulting from the breakup event.
机译:本文探讨了在高速空气横流的影响下液体燃料液滴的宏观雾化特性。通过使用文献中可用的一组相关性来构思分解模型,目的是复制这种现象。将计算结果与实验数据进行比较,以验证模型。结果表明,在评估的定性和定量结果中,测量值和预测值之间存在合理的一致性,从而保持了所采用的数学公式。但是,鉴于在雾化过程中发生的剪切机理发挥剪切作用时,由于缺乏可用的实验数据,可能会寻求进一步的改进。另一方面,使用两种燃料(柴油和生物柴油)可以感知液体性质(尤其是表面张力和粘度)对由破裂事件引起的碎片特性的相关影响。

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