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Simulation of deformation and fragmentation of a falling drop under electric field

机译:电场下降落水变形和碎片模拟

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Physical properties and especially the size of drops are important parameters in many industrial and medical applications. High voltage electric field is one of the effective means to control the final size of drops during the fabrication process which could greatly influence the final size of the product. Therefore a detailed study of electric field effect on a liquid drop is very important. In this work deformation and fragmentation of a falling droplet under gravity and electric force have been studied numerically. Electric force is used as an effective external controlling mechanism to influence the deformation of a drop. The three-dimensional deformation of a falling droplet is studied numerically using the open-source volume of-fluid solver, Gerris. The numerical results are compared with previous analytical, experimental and numerical data and great agreements between the results are obtained. The results are presented for broad range of Bond numbers (Bo) from low Bond number (drop with small deformation) to large Bond number (drop breakup and fragmentation). The results revealed that the electric field can be used as a powerful controlling tool in delaying and expediting the falling drop breakup process. The results also showed that falling drop deforms severely by increasing Bo number which leads to the breakup and fragmentation compared to the cases of low Bo number in which the drop deforms mildly without breakup. (C) 2017 Elsevier B.V. All rights reserved.
机译:物理性质,特别是下降的大小是许多工业和医疗应用中的重要参数。高压电场是在制造过程中控制最终液滴的最终尺寸的有效手段之一,这可以大大影响产品的最终尺寸。因此,对液滴电场效应的详细研究非常重要。在这种工作中,在数值上已经研究了重力和电力下的下降液滴的变形和碎片化。电力用作有效的外部控制机制,以影响下降的变形。使用液体求解器,搅拌器的开源体积进行数值对下降液滴的三维变形。将数值结果与先前的分析,实验和数值数据进行比较,并且获得结果之间的巨大协议。结果以低键合数(小变形)到大键合数(滴分裂和碎片)的低键数(博)呈现了广泛的键合数(BO)。结果表明,电场可以用作延迟和加速下降滴下工艺的强大控制工具。结果还表明,与低博号的情况相比,通过增加博数来严重地变形,其导致损坏的损失和碎裂。 (c)2017 Elsevier B.v.保留所有权利。

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