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Investigations on partial discharges of polymeric insulators in the presence of oscillating water droplets on the surface

机译:在表面上振荡水滴存在下聚合物绝缘体的局部排出的研究

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Polymeric insulators are more and more replacing ceramic or glass insulators in transmission systems due to their low weight, resistance to vandalism, high contamination resistance and, most important, hydrophobic surfaces. However, water droplets forming on the hydrophobic surface of polymeric insulators give rise to significant electric field enhancement, especially in close vicinity to the contact line between air, water droplet and insulator surface [1]. Periodical deformation of a water droplet in an AC electric field makes it difficult to find an exact value of an electric field enhancement factor. Several electrostatic simulations have been performed to find an enhancement factor of the electric field due to stationary water droplets [1-4], but as the water droplets are changing their shape, a dynamic simulation tool that takes this effect into account is preferred. A new numerical approach to the dynamic simulation of water droplet oscillation has recently been proposed in [5-6]. For this contribution, at first, a systematic knowledge about typical oscillation modes of a single water droplet on insulator surfaces [7] and their relation to partial discharge inception voltages are investigated. Comparison of these investigated experimental results and those of a newly developed simulation package shows good agreements [6]. Secondly, in order to localize the partial discharges of a single as well as of multiple water droplets on the insulator surface, electric field distribution of single and multiple water droplets under both tangential and normal E-field are simulated and compared with the experimental results obtained with a daylight UVcamera. Partial discharges of different configurations of multi water droplets on an insulator surface are localized and discussed. As an outlook, a simulation model of corona inception at water droplets on insulator surfaces based on streamer mechanism under high voltage electric field stress and under the impact of periodical changes of the droplet shape is discussed.
机译:聚合绝缘体越来越多,由于其低重量,以破坏,高耐污染性,并且最重要的,疏水性的表面电阻替换传输系统陶瓷或玻璃绝缘子。然而,形成的聚合物绝缘体的疏水性表面上的水滴引起显著电场增强,特别是在紧挨着的空气,水滴和绝缘体表面[1]之间的接触线。在交流电场中水滴的阶段性变形使得它很难找到一个电场增强因子的准确值。几个静电模拟已经被执行找到的电场增强因子由于静止水滴[1-4],但作为水滴改变它们的形状,动态模拟工具,借此效果考虑是优选的。到水滴振荡的动态模拟的新数值方法最近已经在[5-6]中提出。对于这方面的贡献,首先,关于绝缘体上表面[7]和其对局部放电起始电压的关系的单个水滴的典型振荡模式的系统的知识进行了研究。这些比较研究实验结果和那些新开发的模拟包显示出良好的协议[6]的。其次,为了以定位单个的局部放电以及在绝缘体表面上的多个水滴,既切向和法的E场下的单个和多个水滴的电场分布的进行模拟,并用所获得的实验结果进行比较用日光UVcamera。在绝缘体上表面的多水滴的不同配置的局部放电是局部的和讨论。作为一个前景,在水滴电晕起始的模拟模型上绝缘体表面基于在高电压下电场应力和下的液滴形状的周期性变化的影响进行了讨论流光机制。

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