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Application of Synthetic Ester for Drying Distribution Transformer Insulation—The Influence of Cellulose Thickness on Drying Efficiency

机译:合成酯在干燥分配变压器绝缘的应用 - 纤维素厚度对干燥效率的影响

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摘要

A high level of insulation moisture in a transformer increases the breakdown probability and forces a reduction of its load. Therefore, there is a need to dry the transformer insulation. For technical reasons, there are some restrictions on the use of common drying methods for cellulose insulation available on the market. The aim of the research was to check the possibility of using synthetic ester for effective drying of cellulose materials of various thickness and an evaluation of the drying dynamics. The replacement of mineral oil with a synthetic ester caused a reduction of moisture in paper and thin pressboard by one percentage point. It was possible in the case of drying these materials for seven days at a temperature of 70 °C. The effects of drying were much smaller in the case of thicker cellulose samples. This paper also shows the complex problem of simultaneously drying materials of different thicknesses. Drying thin paper and thick pressboard at the same time significantly slows down the drying process of the pressboard. Presented results will be used to develop a procedure for drying the transformer insulation system using a synthetic ester.
机译:变压器中的高水平的绝缘水分增加了击穿概率并强制减少其负荷。因此,需要干燥变压器绝缘。出于技术原因,对市场上可用的纤维素绝缘材料使用常用干燥方法存在一些限制。该研究的目的是检查使用合成酯的可能性,以便有效干燥各种厚度的纤维素材料和干燥动力学的评估。用合成酯更换矿物油导致纸张中的水分和薄压板的减少一百分点。在将这些材料在70℃的温度下干燥七天的情况下,可以进行。在较厚的纤维素样品的情况下,干燥的效果要小得多。本文还显示了同时干燥不同厚度的复杂问题。同时干燥薄纸和厚的压板显着减慢了压板的干燥过程。提出的结果将用于开发使用合成酯干燥变压器绝缘系统的程序。

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