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Improving the Assessment of Remaining Life of Service Aged Power Transformers

机译:提高服务年迈电力变压器剩余寿命的评估

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A significant number of power transformers worldwide are displaying an ever-increasing trend of unreliable operation and shortened lifetimes, due to poor electrical or mechanical conditions and onerous loading situations. Monitoring the condition of these transformers and accurately predicting their useful remaining life is quite significant to utilities and/or independent owners especially considering the high replacement cost and criticality associated with the smooth functioning of these assets. In this regard, the condition of the insulation system plays a pivotal role in influencing the remnant useful life associated with power transformers. This paper provides a better estimation for determining the remaining life of a power transformer based on the results of an improved dynamic model. The model is an upgrade over the basic life expectancy formulation provided by existing IEEE and IEC standards in this domain and considers parameters such as hotspot temperature, moisture, oxygen, the ratio of carbon oxides (CO2/CO), the degree of polymerization (DP) and the concentration of furfural (2-FAL) or methanol (MeOH) as aging markers.
机译:由于电气或机械条件差和繁重的装载情况,全世界的大量电力变压器呈现出不可靠的操作和较短的寿命的趋势。监测这些变形金刚的状况,准确地预测其有用的剩余寿命对公用事业和/或独立所有者具有特别重要的业主,特别是考虑与这些资产的平稳运作相关的高替代成本和关键性。在这方面,绝缘系统的状况在影响与电力变压器相关的残余使用寿命中起着枢转作用。本文提供了基于改进动态模型的结果来确定电力变压器的剩余寿命的更好的估计。该模型是在该领域的现有IEEE和IEC标准提供的基本寿命制定中升级,并考虑热点温度,水分,氧气,碳氧化物的比例(CO 2 / co),聚合度(DP)和糠醛(2-甲)或甲醇(MeOH)的浓度为老化标志物。

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