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首页> 外文期刊>Electrical Insulation Magazine, IEEE >Initiation of a typical network secondary manhole event
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Initiation of a typical network secondary manhole event

机译:典型的网络二次人孔事件的启动

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Manhole events in secondary network systems can evolve in many ways; however, the most common starting point is SBR (styrene butadiene rubber) or butyl rubber cable, typically with a neoprene jacket, which has been aged thermally (as a result of excessive loading) to the point that cracks have formed all the way to the conductor. One of the authors has seen multiple examples of such cable removed from several secondary networks. When such cable is combined with "dirt" and relatively conductive water (often salty water), tracking is likely to form across the insulation and jacket between cracks which expose the conductor in adjacent phases. "Dirt" in the duct helps bridge any gaps between adjacent phases and also holds the conductive water, which extends the time during which dry band tracking occurs between the exposed conductors. At 208 V phase-tophase, a carbonized track will form very readily with one or a few exposures to small amounts of conductive water, and electrical activity will continue until voltage is removed between the phases. Past work and field experience suggest that under such conditions, the jacket and insulation will burn (if sufficient oxygen is present) or pyrolyze (if not), with decomposition of the polymeric insulation and jacket moving down the cable in the direction of air flow in the duct at a speed in the range of 1 mm/ second [1].
机译:辅助网络系统中的人孔事件可以多种方式演变。但是,最常见的起点是SBR(丁苯橡胶)或丁基橡胶电缆,通常带有氯丁橡胶护套,这种护套已经过热老化(由于过大的负荷),直到形成裂纹为止。导体。一位作者看到了从多个辅助网络中删除此类电缆的多个示例。当这种电缆与“污垢”和相对导电的水(通常为咸水)结合使用时,可能会在绝缘层和护套之间形成裂纹,从而在相邻相中暴露出导体的裂纹之间形成跟踪。管道中的“污垢”有助于弥合相邻相之间的任何间隙,并保持导电水,从而延长了在裸露的导体之间发生干带跟踪的时间。在相间为208 V的情况下,一次或几次暴露于少量导电水下,碳化的痕迹将很容易形成,并且电活动将持续到两相之间的电压消除为止。过去的工作和现场经验表明,在这种条件下,护套和绝缘层会燃烧(如果存在足够的氧气)或热解(如果没有),聚合的绝缘层和护套的分解会沿电缆的气流方向向下移动。导管的速度范围为1毫米/秒[1]。

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