天然酯填充变压器连续超负荷一年后的评价

Robert C. Breazeal, A. Sbravati, D. Robalino
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引用次数: 7

摘要

尽管公用事业公司努力为配电网指定合适尺寸的变压器,但变压器通常在高峰时段遭受严重过载。在炎热的夏季,热点温度值可能超过设计限制,这尤其常见。随着天然酯类液体在配电变压器中的应用,在相同条件下,与传统矿物油装置相比,纸张的降解速度有望降低。天然酯的可接受顶油温度明显高于矿物油。固体和液体绝缘的改进提高了配电变压器承受过载条件的能力。2017年进行了一项实验方案,以进一步研究天然酯油的这些特性。本文对南加州爱迪生公司(SCE)所做的研究工作进行了详细的总结和描述。在一年的时间里,11台变压器经历了热过载,从而加速了老化过程。变压器加载周期为4周,达到铭牌额定负荷的145%。每个加载周期结束后,将变压器冷却至环境温度,并使用介电频率响应进行测试,以记录复杂绝缘系统介电条件的变化趋势。本文讨论了挑战、经验教训和建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Natural Ester Retrofilled Transformers After One Year of Continuous Overload
Despite the efforts of the utilities to designate properly sized transformers for the distribution network, transformers are routinely subjected to significant overloads during peak hours. This is especially common during hot summer days where the hot spot temperature value may exceed the design limits. With the utilization of natural ester liquid in distribution transformers, the rate of paper degradation is expected to be reduced in comparison to a traditional mineral oil unit at same conditions. The acceptable top oil temperature for natural ester is significantly higher than that for mineral oil. The improvements for both solid and liquid insulation enhance the ability to subject the distribution transformer to overload conditions. An experimental protocol was performed in 2017 to further investigate these properties of natural ester oil. In this document, the research work performed by Southern California Edison (SCE) is summarized and described in detail. For a period of one year, 11 transformers were subjected to thermal overload and thus, to an accelerated aging process. Transformers were loaded for cycles of 4 weeks, up to 145% of nameplate rating. After each loading cycle the transformers were cooled down to ambient temperature and tested using dielectric frequency response to document and trend the changes in the dielectric conditions of the complex insulation system. Challenges, lessons learned and recommendations are discussed herein.
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