Influence of Water and Powder Contaminants on Dielectric Strength of Transformer Oil

M.S.M. Abeyrathna, M. Karunaratne, K.P.V. Kahingala, R. Samarasinghe, J. R. Lucas
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引用次数: 2

Abstract

Transformer failure statistics reveal that most of the transformer failures are due to insulation failures, where a considerable fraction of that percentage is caused by oil contamination. In this paper, the influence of water and powder contaminants on the electrical performance of transformer oil is investigated. The powder contaminant used is the fibrous dust obtained from the pressboard insulation of high voltage transformers. In a transformer, pressboard powder can easily contaminate the oil during the operation due to electrical and thermal stresses. Levels of powder contaminants selected for the research are 20mg, 40mg, and 80mg and added water levels were 1 ppm, 2 ppm, 3 ppm, and 4 ppm for an initial water level of 26ppm. Effect of contamination on AC breakdown voltage and visual streamer inception voltage of transformer oil was measured, and the results were statistically analyzed. This consists of Pearson correlation analysis, one-way multivariate analysis of variance and one-way analysis of variance. The correlation between the measured parameters of powder and water contamination levels was calculated with the Pearson correlation coefficient. The effect size which is a parameter that indicates how much the variance of the response (dependent) variable is described by the predictor(independent) variable was calculated using one-way multivariate analysis of variance and one-way analysis of variance methods. The results obtained from one-way multivariate analysis of variance showed an 86.1 % effect size for the case of powder contamination. For the same case, with univariate one-way analysis of variance results, 88.8% and 96.2% effect sizes were calculated for breakdown voltage strength and visual streamer inception voltage respectively. For the water contamination case, one-way analysis of variance statistical method was utilized, and the effect size was calculated as 99.34% for the response variable (average of breakdown voltage and visual streamer inception voltage). Results of both cases made it evident that there is a significant effect of contamination on the dielectric strength of transformer oil. With a higher number of experimental results, the accuracy of the statistical analysis could be improved and with an increased number of response variables the analysis can be extended.
水和粉末污染物对变压器油介电强度的影响
变压器故障统计数据显示,大多数变压器故障是由于绝缘故障,其中相当一部分是由油污染引起的。本文研究了水和粉末污染物对变压器油电性能的影响。所使用的粉状污染物是高压变压器的压板绝缘所产生的纤维状粉尘。在变压器中,由于电应力和热应力,压板粉在运行过程中很容易污染油。研究中选择的粉状污染物浓度分别为20mg、40mg、80mg,初始水位为26ppm时,添加的水浓度分别为1ppm、2ppm、3ppm、4ppm。测定了污染对变压器油交流击穿电压和视频流起始电压的影响,并对结果进行了统计分析。包括Pearson相关分析、单变量方差分析和单变量方差分析。用Pearson相关系数计算粉末测量参数与水污染水平之间的相关性。效应大小是一个参数,表明响应(因变量)变量的方差有多少是由预测(独立)变量描述的,使用单向多变量方差分析和单向方差分析方法计算。单因素方差分析的结果显示,粉末污染的效应值为86.1%。同样的情况下,对方差结果进行单因素单因素分析,击穿电压强度和视频流起始电压的效应量分别为88.8%和96.2%。对于水污染案例,采用单因素方差分析统计方法,对响应变量(击穿电压和视频流起始电压的平均值)的效应量计算为99.34%。两种情况的结果表明,污染对变压器油的介电强度有显著影响。随着实验结果数量的增加,统计分析的准确性可以得到提高;随着响应变量数量的增加,分析可以得到扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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