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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Simulation and analysis of coalescence of water droplets on composite insulating surface under DC electric field
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Simulation and analysis of coalescence of water droplets on composite insulating surface under DC electric field

机译:直流电场作用下复合绝缘表面水滴聚结的模拟与分析

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摘要

This paper is aimed at numerical simulations and experiments on the coalescence of pairs of sessile water droplets deposited on dielectric composite insulating surfaces. The mechanisms as well as parameters involved in coalescence under the influence of DC electric field are investigated. A mathematical approach based on a diffuse interface model that essentially consists of a coupling between Navier-Stokes equations, the computing of electric force and a Cahn-Hilliard type equation describing the interface evolution including capillary phenomena, is developed. Experiments are performed to analyze the behavior of these water droplets depending on their size, conductivity and location with respect to electrodes as well as the hydrophobicity of insulator. Simulations showed reasonably good agreement with the experimental data. It also showed that the coalescence process depends mainly on three parameters: the location of the droplets on the insulating surface, the volume of the droplets and the distance between droplets.
机译:本文旨在进行数值模拟和实验,以沉积在电介质复合绝缘表面上的成对的无柄水滴成对。研究了直流电场影响下聚结的机理和参数。开发了一种基于扩散界面模型的数学方法,该模型主要由Navier-Stokes方程之间的耦合,电力的计算以及描述包括毛细现象的界面演化的Cahn-Hilliard型方程组成。进行实验以根据这些水滴的大小,电导率和相对于电极的位置以及绝缘体的疏水性来分析其行为。仿真表明与实验数据相当吻合。还表明,聚结过程主要取决于三个参数:液滴在绝缘表面上的位置,液滴的体积以及液滴之间的距离。

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