Dynamics of water drops on metal and insulator surfaces submitted to AC voltage

A. Moukengue Imano, A. Beroual
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Abstract

This paper reports an experimental study of the deformation of water drops on both conducting and dielectric solid surfaces under ac voltage stress. The discharge activities between water drops and between a conducting water drop and a small rod electrode on a flat hydrophobic insulator are investigated. It's shown that the electric field applied to the drop surface is controlled by the electrode geometry and spacing between water drop and the electrode. The inception electric field strengths of partial discharges for rod electrode provide relevant inputs for the field inhomogeneity used in the simulation of the deformation of aligned water droplets. The discharge current characteristics of water drops on dielectric solid surface made of silicone rubber (SIR), under ac voltage stress are also measured. It's shown that the length of a discharge between droplets or between a single droplet and a small rod electrode is reduced through a particular type of its distortion. This is visually characterized by a water filament or thin film between the water drops along the insulator surface.
在交流电压作用下金属和绝缘体表面水滴的动力学
本文报道了在交流电压应力作用下,导电和介电固体表面水滴变形的实验研究。研究了扁平疏水绝缘子上水滴之间和导电水滴与小棒电极之间的放电活动。结果表明,水滴表面电场大小受电极几何形状和水滴与电极间距的控制。棒状电极局部放电的初始电场强度为模拟排列水滴变形时的场不均匀性提供了相关输入。测量了硅橡胶介质固体表面水滴在交流电压应力作用下的放电电流特性。结果表明,液滴之间或单个液滴与小棒电极之间的放电长度通过一种特定类型的畸变而缩短。这在视觉上的特征是沿绝缘体表面的水滴之间有水丝或薄膜。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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