了解水分平衡过程对变压器油-纸绝缘系统介电响应测量的影响

S. K. Ojha, P. Purkait, Sivaji Chakravorti
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引用次数: 6

摘要

油和纸绝缘中存在的水分对变压器的健康运行具有极大的破坏性。湿气不仅会降低绝缘材料的电气、化学、机械和介电强度,还会加速绝缘材料的老化过程,从而降低其有效剩余寿命。因此,对变压器的油和纤维素绝缘中的水分含量进行准确的定量估计是公用事业公司非常感兴趣的。通过对运行中的变压器采集的油样进行化学分析,可以测定油的水分。另一方面,收集纸张样品进行水分测量是极其困难的,纸张中的水分含量通常是通过使用某些数学方程或平衡图或最近的介电响应测量从测量的油水分值估计出来的。从油的水分测量值来估计纸的水分含量很大程度上取决于油纸绝缘组件中水分的平衡状态。这种平衡过程高度依赖于温度,因此在水分估计过程中提出了严重的准确性问题。本文报道了一种模型变压器油纸绝缘结构的实验结果。工作温度在40 ~ 80℃范围内变化,以研究水分平衡过程对油水分测量和纸张水分估算的影响。利用极化和退极化电流(PDC)测量的介电响应分析进一步研究了不同温度下水分平衡的影响。本文还报道了利用化学试验、数学公式、平衡图和介电响应测量对油和纸的水分估计的比较分析。
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Understanding the effects of moisture equlibrium process on dielectric response measurements for transformer oil-paper insulation systems
Moisture present in oil and paper insulation is extremely damaging for healthy operation of a transformer. Moisture not only reduces electrical, chemical, mechanical and dielectric strength of the insulation, it also accelerates the insulation ageing process, thereby reducing its effective remaining life. It is thus of high interest for the utilities to have accurate quantitative estimates of moisture content in oil and cellulose insulation of a transformer. Oil moisture can be measured by chemical analysis of oil samples collected from running transformer. On the other hand, collecting paper sample for moisture measurement being extremely difficult, moisture content in paper are normally estimated from measured oil moisture values using certain mathematical equations, or equilibrium charts or recently, from dielectric response measurements. Such estimation of paper moisture content from measured values of oil moisture is largely dependent on the equilibrium status of moisture in the oil-paper insulation assembly. This equilibrium process is highly temperature dependent and thus poses serious accuracy issues in moisture estimation procedures. The present contribution reports results of experiments performed on the oil-paper insulation structure of a model transformer. Operating temperatures have been varied over a range of 40°C to 80°C to study the effects of moisture equilibrium process on measurement of oil moisture and estimate of paper moisture there from. Dielectric response analysis using polarization and depolarization currents (PDC) measurement have been used to further study the effects of moisture equilibrium at different temperatures. A comparative analysis of oil and paper moisture estimates using chemical tests, mathematical formulae, equilibrium charts and dielectric response measurements have also been reported in this article.
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