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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Computational Study of Droplet Trains Impacting a Smooth Solid Surface
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Computational Study of Droplet Trains Impacting a Smooth Solid Surface

机译:APS-流体动力学APS部门第70届年会-事件-液滴列车影响光滑固体表面的计算研究

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The study of droplet impingement is vital to understanding the fluid dynamics of fuel injection in modern internal combustion engines. One widely accepted model was proposed by Yarin and Weiss (JFM, 1995), developed from experiments of single trains of ethanol droplets impacting a substrate. The model predicts the onset of splashing and the mass ejected upon splashing. In this study, using an in-house 3D multiphase flow solver, the experiments of Yarin and Weiss were computationally simulated. The experimentally observed splashing threshold was captured by the simulations, thus validating the solver's ability to accurately simulate the splashing dynamics. Then, we performed simulations of cases with multiple droplet trains, which have high relevance to dense fuel sprays, where droplets impact within the spreading diameters of their neighboring droplets, leading to changes in splashing dynamics due to interactions of spreading films. For both single and multi-train simulations the amount of splashed mass was calculated as a function of time, allowing a quantitative comparison between the two cases. Furthermore, using a passive scalar the amount of splashed mass per impinging droplet was also calculated.
机译:液滴撞击的研究对于理解现代内燃机中燃料喷射的流体动力学至关重要。 Yarin和Weiss(JFM,1995)提出了一种被广泛接受的模型,该模型是通过单列乙醇液滴撞击基质的实验开发的。该模型可以预测飞溅的发生和飞溅时的喷射质量。在这项研究中,使用内部3D多相流求解器,对Yarin和Weiss的实验进行了计算模拟。仿真捕获了实验观察到的飞溅阈值,从而验证了求解器能够准确地模拟飞溅动力学的能力。然后,我们对具有多个与高密度燃料喷雾有高度关联的液滴序列的情况进行了模拟,其中液滴在其相邻液滴的扩散直径内发生碰撞,由于扩散膜的相互作用而导致了飞溅动力学的变化。对于单列车和多列车仿真,飞溅质量的量均作为时间的函数进行计算,从而可以对两种情况进行定量比较。此外,使用无源标量,还计算了每个撞击液滴的飞溅质量。

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