影响150 / 20kv变压器油老化的因素

Sotirios Missas, M. Danikas, I. Liapis
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引用次数: 15

摘要

本文研究了影响150/ 20kv变压器油老化的各种参数。从这些变压器中提取了44个油样。变压器在希腊雅典主要地区发挥作用。参数,如击穿强度(用福斯特测试单元测量,根据IEC 156/95),油的颜色(用色度计比符合规格PIN 51517-ASTM P155),湿度(用卡尔-费舍尔法测量,根据IEC 814),界面张力(这是重要的,特别是在老化的早期阶段,根据ASTM D971-91测量)和tanδ(用系统计数tanδ值,最大精度从0.00001到4.0,根据IEC 247进行测量)。变压器的老化与变压器整体绝缘的老化率密切相关,主要与变压器油的老化率有关。热应力和机械应力的结果是油的氧化和其绝缘和冷却性能的退化。湿度和外来颗粒也是导致油品介电强度降低和油品过早失效的因素。外来颗粒与湿度的结合导致油的界面张力降低。接近3的颜色指数不一定是关于油质量的客观指标。主要结论之一是上述所有测量参数都应考虑在内。人们不应该仅根据上述一两个参数来判断油的质量。特别要注意的是获取油样的方法。如果结果相互矛盾,则需要重复采样并进行相应的参数测量。建议对此类变压器进行频繁、仔细的油样取样,以避免发生故障。总的来说,从本工作所调查的变压器来看,只有极少数情况下需要油过滤,并且没有发现变压器需要更换油。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Factors affecting the ageing of transformer oil in 150 / 20 kV transformers
The aim of this paper is the study of various parameters affecting the ageing of transformer oil in transformers of 150/20 kV. 44 samples of oil were taken from such transformers. The transformers function in the major Athens area, Greece. Parameters, such as breakdown strength (measured with a Foster test cell, according to IEC 156/95), oil colour (with a chromometer than meets the specifications PIN 51517-ASTM P155), humidity (measured with the Karl-Fischer method, according to IEC 814), interfacial tension (which is of importance especially in the early stages of ageing, measured according to ASTM D971-91) and tanδ (with a system counting tanδ values with maximum accuracy from 0.00001 to 4.0, measured according to IEC 247) were taken into account. Transformer ageing is strictly related to the rate of ageing of its whole insulation, and mainly of the oil. Thermal and mechanical stresses have as a result the oxidation of oil and the degradation of its insulating and cooling properties. Humidity and foreign particles also consist factors contributing to the decrease of oil dielectric strength and its premature failure. Foreign particles combined with humidity result in a decrease of interfacial tension of the oil. A colour index close to 3 is not necessarily an objective indication regarding the quality of the oil. One of the main conclusions is that all aforementioned measured parameters should be taken into account. One should not base his judgment about the quality of oil on only one or two of the above parameters. Special attention is given to the way one gets the oil samples. In case of contradictory results, a repetition of sampling and the corresponding parameter measurements are required. The frequent and careful oil sampling in such transformers is recommended in order to avoid malfunctions. In general, from the transformers investigated in the context of this work, in only very few cases oil filtering was required and none of the transformers was found to function with oil requiring replacement.
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