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Evaluation of Power Transformers' Effective Hot-Spot Factors by Thermal Modeling of Scrapped Units

机译:通过报废机组的热模型评估电力变压器的有效热点因素

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摘要

The ultimate life of a power transformer is critically governed by the condition of its insulation paper which undergoes thermal degradation during the operation. A thermal model has been published in the IEC transformer loading guide 60076-7 and can be used to calculate the windings' hot-spot temperature based on operating conditions and thermal parameters, and to assess the insulating paper's aging rate. However, the accuracy of hot-spot temperature is greatly affected by the generally unknown hot-spot factor. In this paper, utilizing the paper samples of scrapped transformers and the degree of polymerization (DP) predicted thermal lives as benchmarks are proposed and through the IEC thermal model to reversely derive the transformers' effective hot-spot factors (EHSFs) while the paper's aging mechanisms and moisture accumulation effect over lifetime have been taken into consideration. As a result, the median of 35 scrapped units' EHSF is 2.95. These EHSFs are assigned to the field sister transformers to give a practical assessment of transformer cooling efficiency and loadability.
机译:电力变压器的极限寿命主要取决于其绝缘纸的状况,绝缘纸在运行过程中会发生热降解。一个热模型已发布在IEC变压器负载指南60076-7中,可用于根据工作条件和热参数计算绕组的热点温度,并评估绝缘纸的老化率。但是,热点温度的准确性受通常未知的热点因素影响很大。本文以废旧变压器的纸样和聚合度(DP)预测的热寿命为基准,通过IEC热模型反推得出变压器老化时变压器的有效热点因子(EHSF)。已经考虑了机理和整个寿命中的水分积累效应。结果,35个报废单位的EHSF中位数为2.95。这些EHSF被分配给现场姐妹变压器,以便对变压器的冷却效率和负载能力进行实际评估。

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