Investigating the Effects of Creepage Discharges on the Breakdown Voltage of Natural Ester Oil Impregnated Pressboard in Power Transformers

Bakhekile Ndlovu, Cuthbert Nyamupngedengu
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Abstract

Power transformers are the most expensive and important equipment in the transmission network. It is therefore crucial that they are well protected to avoid damage of equipment and possibly loss of life. The common transformer failure modes are due to dielectric failures. The aim of this project is to subject pressboard to creepage partial discharges and investigate the effects on the AC breakdown voltage. Furthermore, since ester oils are considered to have superior characteristics to mineral oil, the effects of creepage discharges on the respective breakdown voltages are investigated and reported. This is done by using an inclined needle-plane electrode configuration, with an electrode gap of 25 mm. Creepage discharges are generated for various times and the pressboard samples undergo breakdown voltage tests. Ester oil was found to withstand breakdown voltages up to 20 % higher than mineral oil. Generally, a downward trend was observed as the exposure to creepage discharges increased for both oils. The Weibull distribution model reveals that a brand new mineral oil-impregnated pressboard sample can withstand breakdown at the same level as an ester oil-impregnated pressboard sample that has been exposed to creepage discharges for 7 hours. Ester oils can therefore improve the lifetime of pressboard (and thus the transformer itself) regardless of exposure to insulation deterioration through creepage discharges.
蠕电放电对电力变压器天然酯油浸渍板击穿电压影响的研究
电力变压器是输电网中最昂贵、最重要的设备。因此,至关重要的是要保护好它们,以避免设备损坏和可能的生命损失。常见的变压器故障是由于介质故障引起的。本项目的目的是使电路板发生爬电局部放电,并研究其对交流击穿电压的影响。此外,由于酯油被认为具有优于矿物油的特性,因此研究并报道了爬电放电对各自击穿电压的影响。这是通过使用倾斜针平面电极配置,电极间隙为25毫米来完成的。爬电放电在不同时间产生,压板样品进行击穿电压试验。酯油的耐击穿电压比矿物油高20%。总的来说,随着两种油的漏电量增加,漏电量呈下降趋势。威布尔分布模型表明,一个全新的矿物油浸渍纸板样品可以承受与酯油浸渍纸板样品暴露在蠕电放电7小时相同的击穿水平。因此,酯类油可以提高压板(以及变压器本身)的使用寿命,而不考虑由于漏电放电而导致绝缘恶化的情况。
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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