Very Light Pollution DC Flashover Characteristics of Short Samples of Polymer Insulators

M. Amer, J. Laninga, W. McDermid, D. Swatek, B. Kordi
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Abstract

Continuity of electric power transportation is an essential goal for power distribution companies to avoid revenue losses. Nowadays, the existing good insulation systems besides live-line maintenance procedures can secure this target. However, the pollution traces over insulating surface may cause the failure of power transmission systems. This research aims to find to what extent is the effect of very light pollution severity on the flashover performance of polymeric insulators under DC voltages. Two insulating materials are employed in this research, fiberglass reinforced plastic (FRP) and high temperature vulcanized silicone rubber (HTV-SiR). The sample's lengths are 130 mm and their diameters are 32 mm. The artificial pollution tests are performed according to the IEC 507 clean fog test method and the flashover voltage is determined by applying the up-and-down method technique. The results show that the pollution flashover voltage decreases as the pollution severity increases and is dramatically decreased as compared to the DC flashover voltage of clean samples. Moreover, the effect of equivalent salt deposit density (ESDD) on the 50% flashover voltage of the two materials is expressed as a power function. The pollution flashover voltage gradient of HTV-SiR samples is found to be better than that of FRP materials. It is highly recommended to wipe the hot sticks with silicone wiping clothes before and after the maintenance work to remove the very light pollution layers and provide the FRP surface with a layer of silicone which increases its flashover performance. These recommendations will promote the followed procedures for live-line maintenance to preserve crew's life from unintentional accidents.
聚合物绝缘子短样品的极轻污染直流闪络特性
电力输送的连续性是配电公司避免收益损失的重要目标。如今,除了在线维护程序外,现有的良好绝缘系统可以确保这一目标。然而,绝缘表面的污染痕迹可能导致输电系统的故障。本研究旨在找出极轻污染严重程度对直流电压下聚合物绝缘子闪络性能的影响程度。本研究采用了两种绝缘材料:玻璃纤维增强塑料(FRP)和高温硫化硅橡胶(HTV-SiR)。样品的长度为130毫米,直径为32毫米。人工污染试验按IEC 507洁净雾试验方法进行,闪络电压采用上下法技术测定。结果表明,污染样品的直流闪络电压随污染程度的增加而降低,且与洁净样品的直流闪络电压相比有显著降低。此外,等效盐沉积密度(ESDD)对两种材料50%闪络电压的影响用幂函数表示。HTV-SiR材料的污闪电压梯度优于FRP材料。强烈建议在维护工作前后用硅酮擦拭衣擦拭热棒,去除极轻的污染层,并为FRP表面涂上一层硅酮,增加其闪燃性能。这些建议将促进以下的在线维修程序,以保护机组人员的生命免受意外事故。
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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