Field experience of transformer untanking to identify electrical faults and comparison with Dissolved Gas Analysis

R. Samsudin, A. Ramli, A. Berhanuddin, Y. Zaidey
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引用次数: 4

Abstract

Power transformer consists of components which are under consistent thermal and electrical stresses. The major component which degrades under these stresses is the paper insulation of the power transformer. The life of the transformer is determined by the condition of the paper insulation. The degradation of the paper insulation will be accelerated with the presence of electrical fault. Electrical fault in power transformer can be categorized into two which are Partial Discharge (PD) and Arcing. A PD will eventually develop into arcing. Any electrical fault in the transformer can be detected by using Dissolved Gas Analysis technique. The DGA can be used to differentiate between the types of faults in the transformer. However, DGA alone is not conclusive in determining the electrical fault in the transformer. As a complement, acoustic partial discharge technique was used to detect the electrical fault in the transformer. In this paper, the detection of electrical fault in two units of 33/11kV, 15MVA transformers were done by using Dissolved Gas Analysis (DGA). Then, the acoustic partial discharge test was carried out to detect the activity and locate the source of the electrical fault. During the acoustic partial discharge testing, some electrical discharge signal was picked-up from On-Load Tap Changer (OLTC) tank. Then, the transformers were un-tanking for physical inspection. Based on the inspection done on two transformers, the DGA analysis methods were unable to detect the OLTC oil contamination in the main tank oil and it is very dependent on the transformer conservator tank design. The acoustic partial discharge technique proves to be a useful tool in detecting electrical discharges in the power transformer.
变压器拆罐识别电气故障的现场经验,并与溶解气体分析相比较
电力变压器由处于一致的热应力和电应力下的部件组成。在这些应力下退化的主要部件是电力变压器的绝缘纸。变压器的寿命是由纸绝缘的状况决定的。电气故障的存在会加速纸绝缘的退化。电力变压器的电气故障可分为局部放电和电弧两种。PD最终会发展成电弧。利用溶解气体分析技术可以检测变压器的电气故障。DGA可用于区分变压器中的故障类型。然而,单靠DGA并不能确定变压器的电气故障。作为补充,采用声局部放电技术检测变压器电气故障。本文采用溶解气体分析法(DGA)对两台33/11kV, 15MVA变压器的电气故障进行了检测。然后,进行声局部放电试验,检测活动,定位电气故障源。在声学局部放电测试中,从有载分接开关(OLTC)罐中提取了一些放电信号。然后,变压器被拆箱进行物理检查。通过对两台变压器的检测,发现DGA分析方法无法检测出主油箱油中OLTC油的污染情况,且主要依赖于变压器储油罐的设计。声学局部放电技术是检测电力变压器放电的一种有效方法。
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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