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Performance of dielectric properties due to the presence of moisture in vegetable insulation oils and kraft paper immersed in the oils

机译:由于蔬菜绝缘油和浸入油中的牛皮纸中存在水分,因此具有介电性能

摘要

Vegetable insulation oils in transformers have become a reality. However, they are inherently hydrophilic and can absorb much moisture. Existence of moisture in transformer insulation will generally lower the breakdown voltage (BDV) of oil. Moisture will also accelerate cellulose deterioration by increasing its Direct Current (DC) conductivity. Both oil and cellulose are components of the transformer insulation system. There are few studies that have been, done by other researchers on palm-based oils but they neither address the effect of increasing moisture in the oil types nor do they give understanding of the deterioration of cellulose when immersed in the oil. It is therefore important to understand how these classes of oils retain its dielectric strength and its relationship with kraft paper after absorbing so much moisture. In this study, Fourier Transform Infrared (FTIR) spectroscopy, Karl Fischer titration analysis, IEC dielectric test Standards and established Polarization and Depolarization Current (PDC) insulation assessment technique were used to study moisture increase in four v.egetable-based oils and kraft paper immersed in them. The oils studied were three palm-based oils, Red Palm Oil (RPO), Palm Fatty Acid Ester (PFAE) and Refined Bleached Deodorized Palm Oil (RBDPO) and one soybean-based Envirotemp@ FR3rM. Moisture was varied by up to 0.3% (by vqlume) and the cellulose samples are of 0.2mm, 0.5mm and lmm thickness. Results from these studies show that the hydrolysis of these oil samples causes their moisture level to increase by 100% to 700Yo. [n addition, the moisture increase causes changes in the fatty acid structure of the palm-based insulation oil only and not on the soybean-based oil. Comparing the BDV of these oil types to IEC 60156 standard of 30kV, this study found that FR3, PFAE and RBDPO are capable of remaining above standard at moisture level up to 0.055%, 0.025% and 0.015% respectively while the BDV in RPO was below standard. An equation to estimate the BDVs of vegetable oils from their moisture content was also developed. The estimated BDVs of the oil samples mostly varied between I to 20%o from the experimental BDVs. The study also found that as moisture in the oil increases, kraft paper samples absorb oil and lose moisture to oil. The oil absorption was also a function of paper thickness and moisture in the oil. The conductivity of kraft paper samples immersed in oil types were found to have lowest values at oil moisture level of 0.01% for both RPO and PFAE and 0.02% for both RBDPO and ER3. Thus, for better aging performance, the research concludes that vegetable insulation oils should not be as dry as mineral oils as cellulose has lower conductivity in wetter vegetable oil.
机译:变压器中的植物绝缘油已成为现实。但是,它们本质上是亲水性的,可以吸收大量水分。变压器绝缘中存在水分通常会降低油的击穿电压(BDV)。水分还会通过增加其直流电(DC)电导率来加速纤维素的降解。油和纤维素都是变压器绝缘系统的组成部分。其他研究人员对棕榈油的研究很少,但是它们既未解决油类中水分增加的影响,也未理解浸入油中时纤维素的降解。因此,重要的是要了解这些油类在吸收大量水分后如何保持其介电强度以及与牛皮纸的关系。在这项研究中,使用傅立叶变换红外(FTIR)光谱,卡尔·费休滴定分析,IEC介电测试标准以及已建立的极化和去极化电流(PDC)绝缘评估技术来研究四种蔬菜基油和牛皮纸中的水分增加浸入他们之中。研究的油是三种棕榈基油,红棕榈油(RPO),棕榈脂肪酸酯(PFAE)和精制漂白脱臭棕榈油(RBDPO)和一种大豆基Envirotemp @ FR3rM。水分变化幅度最大为0.3%(按vqlume计),纤维素样品的厚度为0.2mm,0.5mm和1mm。这些研究的结果表明,这些油样的水解会导致其水分含量增加100%,达到700Yo。 [此外,水分增加仅引起棕榈基绝缘油的脂肪酸结构变化,而不引起大豆基油的变化。将这些油的BDV与30kV的IEC 60156标准进行比较,研究发现FR3,PFAE和RBDPO能够分别在水分含量分别高达0.055%,0.025%和0.015%的情况下保持高于标准,而RPO中的BDV却低于标准。还建立了根据水分含量估算植物油BDV的方程。估计的油样BDV与实验BDV的差值通常在1%至20%之间。研究还发现,随着油中水分的增加,牛皮纸样品会吸收油,而油中会失去水分。吸油量也是纸张厚度和油中水分的函数。发现浸在油类中的牛皮纸样品的电导率在RPO和PFAE均为0.01%,RBDPO和ER3均为0.02%的情况下具有最低的水分含量。因此,为了获得更好的老化性能,研究得出结论,植物绝缘油不应像矿物油那样干燥,因为纤维素在湿润的植物油中具有较低的电导率。

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