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A coupled discrete droplet and SPH model for predicting spray impingement onto surfaces and into fluid pools

机译:耦合的离散液滴和SPH模型,用于预测表面和流体池上的喷雾撞击

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In this paper we detail the development of a combined DEM-SPH model for spray impingement into a pool of water or onto a flat surface on which a pool of water can build up. The spray is represented by discrete particles which can collide with solid objects, each other and also merge with liquid surfaces. The liquid pool dynamics are solved for using the SPH method. The proposed coupling allows momentum to be transferred from the discrete spray phase into the fluid phase in the pool. The performance of this coupled DEM-SPH method is evaluated by comparing to experiments performed for simple spray arrangements in which the pressure in the pool just above the solid surface is carefully measured by a probe that is moved systematically across the surface. A comparison of the simulated pressure distribution with those from the experiments shows very good agreement for the size of the high pressure region, the average pressure the pressure distribution within this region generated by the spray impingement for cases with one, two and three overlapping sprays. Collisions between spray droplets in the case of multiple sprays are found to have a small but noticeable effect on the details of the high pressures in the regions of overlap of the sprays. Crown Copyright (C) 2018 Published by Elsevier Inc. All rights reserved.
机译:在本文中,我们详细介绍了组合DEM-SPH模型的开发过程,该模型可将喷雾撞击到水池中或平坦的表面上,在水池上可以建立水池。喷雾以离散的颗粒为代表,这些颗粒可以与固体物体相互碰撞,也可以与液体表面融合。使用SPH方法解决了液池动力学问题。提出的耦合允许动量从离散的喷雾相转移到池中的流体相。通过与对简单喷雾装置进行的实验进行比较,对这种耦合DEM-SPH方法的性能进行了评估,在简单喷雾装置中,通过系统移动整个表面的探针仔细测量了刚好位于固体表面上方的池中的压力。模拟压力分布与实验压力分布的比较表明,对于高压区域的大小,对于一,二和三重重叠喷雾的情况,由喷雾冲击产生的该区域内压力分布的平均压力非常一致。发现在多次喷雾的情况下,喷雾液滴之间的碰撞对喷雾重叠区域中的高压细节具有很小但明显的影响。 Crown版权所有(C)2018,由Elsevier Inc.保留。保留所有权利。

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