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首页> 外文期刊>International Journal of Multiphase Flow >Prediction and Measurement of the local extinction coefficient in sprays for 3D simulation/experiment data comparison
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Prediction and Measurement of the local extinction coefficient in sprays for 3D simulation/experiment data comparison

机译:喷雾局部消光系数的预测和测量,用于3D模拟/实验数据比较

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摘要

In the recent years, large progresses in laser imaging techniques have allowed to extract spatially resolved 2D and 3D quantitative spray information even in optically dense situations. The main breakthrough of these techniques is the possibility of suppressing unwanted effects from multiple light scattering using Structured Illumination. Thanks to this new feature, effects due to light extinction can also be corrected allowing the measurement of the local extinction coefficient. These quantitative information which is available even in challenging conditions, where Phase Doppler does not work anymore, can be used for data comparison between experiment and simulation. The local extinction coefficient is particularly valuable for the description of the droplet field, defined as the "spray region", as it contains information related to both droplets size and concentration. In this article we detail, then, the procedure enabling the modelers to obtain numerically this local extinction coefficient over the full 3D spray system. Following this procedure, results can now be adequately compared between simulation and experiment. The proposed comparison approach can better guide model adjustments in situation where the initial droplet size distribution is unknown or approximated and presents a step towards future validations of spray simulations, especially those based on Lagrangian Particle Tracking. The approach is exemplified here for the case of a Diesel-type spray. The results reveal at which specific spray locations discrepancies occur, and highlight the sensitivity of the initial droplet size distribution on the resulting extinction coefficient. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:近年来,即使在光学密集的情况下,激光成像技术的巨大进步也允许提取空间分辨的2D和3D定量喷雾信息。这些技术的主要突破是可以使用结构化照明抑制多重光散射产生的不良影响。由于有了这一新功能,还可以校正由于消光引起的影响,从而可以测量局部消光系数。这些定量信息即使在具有挑战性的条件下(相位多普勒不再工作)也可以使用,可用于实验和仿真之间的数据比较。局部消光系数对于定义为“喷雾区域”的液滴场的描述特别有价值,因为它包含与液滴大小和浓度有关的信息。然后,在本文中,我们将详细介绍使建模人员能够在整个3D喷涂系统上以数字方式获得该局部消光系数的过程。按照此步骤,现在可以在模拟和实验之间充分比较结果。所提出的比较方法可以在初始液滴大小分布未知或近似的情况下更好地指导模型调整,并为进一步验证喷雾模拟(尤其是基于拉格朗日粒子跟踪的模拟)迈出了一步。这里以柴油型喷雾器为例进行说明。结果揭示了在哪个特定的喷雾位置出现了差异,并突出了初始液滴尺寸分布对所得消光系数的敏感性。 (C)2015作者。由Elsevier Ltd.发布

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