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首页> 外文期刊>Power Delivery, IEEE Transactions on >Corrosive Sulfur Induced Failures in Oil-Filled Electrical Power Transformers and Shunt Reactors
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Corrosive Sulfur Induced Failures in Oil-Filled Electrical Power Transformers and Shunt Reactors

机译:充满油的电力变压器和并联电抗器中的腐蚀硫诱导故障

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摘要

The nature and causes of corrosive sulfur induced failures are examined in oil-filled transformers and shunt reactors. Copper sulfide, which is formed when the corrosive sulfur in a mineral oil reacts with the copper conductors, is likely to diffuse into the paper tapes insulating the conductors. Since copper sulfide is partially conducting, the dielectric losses of the contaminated oil-impregnated-paper tapes are markedly increased; paper tapes in close proximity to the copper conductors are found to attain tan delta values > 1.0 even at room temperature. It is highly likely that thermal instabilities develop at those sites at operating temperatures, leading to increased loss currents and, ultimately, short circuits between the turns. This sequence of events is substantiated by evidence from the field, which indicates large areas of thermally degraded insulations and charred breakdown regions along the coils, the extent of which becomes more pronounced at higher operating temperatures (toward the top of the windings).
机译:在充油变压器和并联电抗器中检查了由硫引起的腐蚀性腐蚀的性质和原因。当矿物油中的腐蚀性硫与铜导体反应时形成的硫化铜很可能扩散到绝缘导体的纸带中。由于硫化铜是部分导电的,受污染的浸油纸带的介电损耗明显增加;发现即使在室温下,紧贴铜导体的纸带也能达到tanδ值> 1.0。在工作温度下,这些位置处极有可能出现热不稳定性,从而导致损耗电流增加,最终导致匝间短路。现场的证据证实了这一事件的顺序,这表明线圈上有大面积的热降解绝缘层和烧焦的击穿区域,在较高的工作温度下(朝绕组顶部),其程度变得更加明显。

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