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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Effects of temperature and aging on furfural partitioning in the oil-paper system of power transformers
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Effects of temperature and aging on furfural partitioning in the oil-paper system of power transformers

机译:温度和老化对电力变压器油纸系统中糠醛分配的影响

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摘要

Furfural content in oil is a valuable indicator of cellulose paper degradation and is widely utilized in aging assessment for power transformers. However, with the same aging degree of insulation paper, the actual furfural content in oil is influenced by temperature because furfural partitioning behavior in the oil-paper insulation system of power transformers changes with temperature. Thus, correction of the temperature effect on furfural partitioning is crucial for accurate assessment of the aging of power transformers. In this research, oil-paper samples with different furfural contents were prepared through an accelerated thermal aging test. A furfural equilibrium experiment was conducted at different temperatures to construct a furfural partitioning diagram. The mass fraction of furfural in oil and paper was calculated. Results showed that the mass fraction of furfural in oil increases with temperature rising and aging deepening, which means that furfural tends to migrate from paper to oil at high temperatures and deep aging conditions. The change in furfural partitioning between oil and paper at different temperatures causes a deviation in paper aging assessment. To correct the temperature effect on furfural partitioning, a furfural correction factor was developed to normalize furfural contents in oil at different temperatures to a reference temperature. The furfural correction factor was verified by experimental data and then introduced into the relation between degree of polymerization of paper and furfural content of oil. Verification results showed that the corrected equation can enhance the accuracy of paper aging estimation at different temperatures. The findings of this work indicated temperature effect on furfural partitioning should be considered when determining the furfural thresholds and evaluating the aging condition of power transformers.
机译:油中的糠醛含量是纤维素纸降解的重要指标,已广泛用于电力变压器的老化评估中。然而,在绝缘纸老化程度相同的情况下,由于电力变压器油纸绝缘系统中的糠醛分配行为会随温度变化,因此油中的糠醛实际含量会受到温度的影响。因此,校正温度对糠醛分配的影响对于准确评估电力变压器的老化至关重要。在这项研究中,通过加速热老化试验制备了具有不同糠醛含量的油纸样品。在不同温度下进行糠醛平衡实验以构建糠醛分配图。计算了油和纸中糠醛的质量分数。结果表明,随着温度的升高和老化的加深,糠醛在油中的质量分数增加,这意味着糠醛在高温和深度老化的条件下倾向于从纸张迁移到油中。在不同温度下,油和纸张之间的糠醛分配变化会导致纸张老化评估产生偏差。为了校正温度对糠醛分配的影响,开发了糠醛校正因子以将不同温度下的油中糠醛含量归一化至参考温度。通过实验数据验证了糠醛校正因子,然后将其引入纸的聚合度与油中糠醛含量之间的关系。验证结果表明,修正后的方程可以提高不同温度下纸张老化估计的准确性。这项工作的发现表明,在确定糠醛阈值和评估电力变压器的老化条件时,应考虑温度对糠醛分配的影响。

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