首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Comparative evaluation of the leakage current and aging performance of htv sr insulators of different creepage lengths when energized by ac, dc+ or dc– in a severe marine environment
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Comparative evaluation of the leakage current and aging performance of htv sr insulators of different creepage lengths when energized by ac, dc+ or dc– in a severe marine environment

机译:在严酷的海洋环境中,用交流电,直流电+或直流电–通电时,不同爬电长度的超高压超高压锶绝缘子的泄漏电流和老化性能的比较评估

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This paper compares the performance of HTV (high temperature vulcanized) silicone rubber power line insulators under AC and both polarities DC when subjected to natural pollution. The investigation was conducted at Koeberg Pollution Test Station (KIPTS) which is situated near Cape Town and is known for its severe coastal pollution and high humidity during the night. High rainfall is experienced during winter. Five insulators of different creepage lengths and of the same manufacture were energized by each voltage type, while being exposed to the environment for 310 days. The leakage current data of all insulators were logged, together with the weather data. Pollution levels were measured on a regular basis, using the ESDD (equivalent salt deposit density) method and directional dust deposit gauges (DDDG). High leakage current levels were recorded in summer due to the high pollution levels and high humidity. During winter, in contrast, lower levels of leakage current were recorded, confirming the washing effect of the winter rain. The leakage current levels for the silicone rubber insulators were of a similar order of magnitude for AC and positive DC, but lower for negative DC. Electrical discharge activities on the insulators were recorded at night and surface erosion was monitored at set intervals. A polarity effect relating to pollution performance and aging was confirmed on DC energized insulators.
机译:本文比较了HTV(高温硫化)硅橡胶电力线绝缘子在遭受自然污染的交流电和两极直流电下的性能。这项调查是在位于开普敦附近的Koeberg污染测试站(KIPTS)进行的,该站以夜间严重的沿海污染和高湿度着称。冬季降雨量很高。每种电压类型为五个不同爬电长度和相同制造商的绝缘子通电,同时暴露于环境中达310天。记录所有绝缘子的泄漏电流数据以及天气数据。使用ESDD(等效盐沉积物密度)方法和定向粉尘沉积仪(DDDG)定期测量污染水平。由于高污染水平和高湿度,夏季记录到高泄漏电流水平。相反,在冬季,记录到的泄漏电流较低,证实了冬季雨水的冲洗效果。硅橡胶绝缘子的泄漏电流水平对于交流电和正直流电来说,大小相似,而对于负直流电则更低。晚上记录绝缘子上的放电活动,并按设定的时间间隔监测表面腐蚀。在直流绝缘子上证实了与污染性能和老化有关的极性效应。

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