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具有不同疏水性和电场强度的聚合物表面上多相流的动态行为。

The Dynamic Behaviour of Multi-Phase Flow on a Polymeric Surface with Various Hydrophobicity and Electric Field Strength.

作者信息

Li Qi, Liu Rui, Li Li, Song Xiaofan, Wang Yifan, Jiang Xingliang

机构信息

State Key Laboratory of Power Transmission Equipment and Systerm Security and New Technology, College of Electrical Engineering, Chongqing University, Chongqing 400044, China.

Electric Power Research Institute of Guangdong Power Grid Co., Ltd., Guangzhou 510080, China.

出版信息

Polymers (Basel). 2022 Feb 15;14(4):750. doi: 10.3390/polym14040750.

Abstract

The dynamic behaviour of rain droplets on the insulator surface is a key measure to its reliability and performance. This is due to the fact that the presence and motion of rain droplets cause intensive discharge activities, such as corona and low current arcing, which accelerate the ageing process and flashovers. This article aims to investigate and characterize the movement of a rain droplet placed on an inclined insulator surface subject to an intensive electric field. The rain droplets' movement on hydrophobic surfaces in the absence of an electric field is investigated. A high speed camera is used to capture the footage and finite element method (FEM) is used to simulate the multi-physics phenomenon on two polymeric surfaces, namely, silicon rubber (SiR) and PTFE (polytetrafluoroethylene). A 'creepage' motion was observed. The inception of motion and the movement speed are analysed in correlation with various surface conditions. Models are established to estimate the moisture and potential discharge characteristics on the inclined polymeric surfaces. They are further utilized to analyse the actual insulators subject to wet conditions.

摘要

雨滴在绝缘子表面的动态行为是衡量其可靠性和性能的关键指标。这是因为雨滴的存在和运动引发了强烈的放电活动,如电晕和低电流电弧,从而加速了老化过程和闪络。本文旨在研究和描述置于倾斜绝缘子表面且处于强电场中的雨滴的运动情况。同时,还研究了在无电场情况下雨滴在疏水表面的运动。使用高速摄像机捕捉图像,并采用有限元方法(FEM)在两种聚合物表面,即硅橡胶(SiR)和聚四氟乙烯(PTFE)上模拟多物理现象。观察到了“爬电”运动。分析了运动的起始和运动速度与各种表面条件的相关性。建立了模型来估计倾斜聚合物表面的湿度和潜在放电特性。这些模型进一步用于分析实际处于潮湿条件下的绝缘子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b57/8880393/93d19e0f0f49/polymers-14-00750-g001.jpg

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