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Electrohydrodynamics of water droplets on polymer surfaces

机译:聚合物表面水滴电液体的电力学动力学

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摘要

For a complete comprehension of the phenomena connected with the flashover of polymeric insulators, we must first understand the behavior of sessile water droplets in strong electric fields exist on hydrophobic surfaces.The purpose of this paper is to study the distortion of water droplets under electric stress, which causes electric field enhancement, which is the key phenomenon behind the flashover mechanism of hydrophobic, nonceramic insulators. The electric fieldintensification caused by water droplets depends on the size, shape, conductivity, and number of droplets, their proximity to each other, surface of the material, and other environmental conditions. Presented in this paper are the results of a parametricstudy of field distortion of water droplets on polymeric surfaces using commercial simulation software.The results indicate that on polymeric surfaces, the electric field intensity is higher, if the droplet is flatter (lower contact angle), of higher conductivity and if there are many droplets. Comparison of computed results with experimental data showsgood correlation.
机译:为了完全理解与聚合物绝缘体的闪络有连接的现象,我们必须首先了解在疏水表面上存在强大电场中的柄水滴的行为。本文的目的是研究电力应力下的水滴的变形,这导致电场增强,这是疏水性,无燃烧器绝缘体的闪络机制背后的关键现象。由水滴引起的电场消射率取决于液滴的尺寸,形状,导电性和液滴数,它们彼此的邻近,材料表面和其他环境条件。本文介绍的是使用商业仿真软件在聚合物表面上的水滴的现场变形的参数化的结果。结果表明,在聚合物表面上,如果液滴更平坦(较低接触角),则电场强度较高。导电性较高,如果有很多液滴。计算结果与实验数据的比较显示了相关性。

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