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Volcanic ash contamination of high voltage insulators: Revising insulator design to aid the electrostatic repulsion of volcanic ash

机译:高压绝缘子的火山灰污染:修改绝缘子设计以帮助静电排斥火山灰

摘要

Ashfalls from volcanic eruptions can pose a considerable risk to electric transmission and distribution networks. Dry ash is non-conductive [1] and unlikely to cause an insulator flashover; but it is of concern when the ash becomes damp/wet through light rain, dew, and fog. Volcanic ash is the signature of a volcano; all volcanoes have slightly different volcanic ash. During an eruption the ash absorbs charged halogens and molecules into its surface which dry to become soluble salts [1]. When the ash becomes wet, these trapped soluble salts dissolve in the water to form a conductive channel. This can result in insulator flashover.Current insulator cleaning methods are exceedingly labour intensive and can only occur once a volcanic eruption has finished. Linemen are required to manually clean each and every insulator. This is a very time consuming task and may result in a lengthy downtime for the affected transmission line [2]. A self-cleaning insulator would vastly improve the current situation. Not only would the insulators be less susceptible to the build-up of ash, the effort and money required to manually clean the insulators would be substantially reduced. Only transmission lines potentially susceptible to volcanic ash contamination would need to be retrofitted, with either new insulators, or to modify existing insulators to improve their self-cleaning abilities and assist the natural cleaning of heavy rain.
机译:火山喷发产生的灰烬可能会对输电和配电网络构成相当大的风险。干灰是非导电性的[1],不太可能导致绝缘子闪络。但是当灰由于小雨,露水和雾而变得湿/湿时,会引起关注。火山灰是火山的标志。所有火山的火山灰略有不同。在喷发过程中,灰分将带电的卤素和分子吸收到其表面,这些卤素和分子干燥后变成可溶性盐[1]。当灰分变湿时,这些​​捕获的可溶性盐溶解在水中以形成导电通道。这可能导致绝缘子闪络。当前的绝缘子清洁方法非常费力,并且仅在火山喷发结束后才能发生。需要巡线员手动清洁每个绝缘子。这是一项非常耗时的任务,并且可能导致受影响的传输线[2]长时间停机。自清洁绝缘子将大大改善当前状况。绝缘体不仅不易积灰,而且将大大减少手工清洁绝缘体所需的精力和金钱。仅需要对可能容易受到火山灰污染的输电线路进行改造,或者使用新的绝缘子,或者对现有绝缘子进行改造,以提高其自清洁能力并帮助自然清洁大雨。

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