Diagnosis of Power Transformer Condition using Dissolved Gas Analysis Technique: Case Studies at Geothermal Power Plants In Indonesia

Sinanuri Surawijaya, R. A. Prasojo, Winanda Riga Tamma, I. G. Ngurah Mahendrayana, Suwarno
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引用次数: 3

Abstract

For many years, to determine the type of inceptive failure on power transformers, practitioners often use the Dissolved Gas Analysis (DGA) to obtain conclusions about the causes of failures. To determine the failure that occurs in the transformer, the generation of certain gases within a transformer is an incredible indicator that has been proven so far. Because of the sensitivity and accuracy in measuring gases, this technique has become standard practice in normal maintenance activities at electric utility companies. This article presents the investigation of dissolved gas analysis (DGA) of four generator step-up (GSU) transformers at geothermal power plants in Indonesia. Each transformer insulating oil data were collected during yearly routine inspection and the DGA measurements at power plants for the duration of 6 years was obtained. DGA measurement result was analyzed and processed using the dissolved gas analysis method based on IEEE C57-104 and IEC 60599 standards. The interpretation of measurement data is conducted using four methods, that is key gas, gas ratio, Duval Triangle, and The Four Gases. Rogers Ratio, Doernenburg Ratio and Gas Ratio Combination are the gas ratio methods used in this study. The results of the diagnosis of generator step-up (GSU) transformers using DGA analysis showed that all four transformers were in different conditions for each analysis method. This paper highlights the importance of keeping track of DGA history and using several DGA interpretation methods to add confidence to the result.
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利用溶解气体分析技术诊断电力变压器状况:以印尼地热发电厂为例
多年来,为了确定电力变压器的初始故障类型,从业人员经常使用溶解气体分析(DGA)来得出故障原因的结论。为了确定变压器中发生的故障,在变压器中产生某些气体是一个迄今为止已被证明的令人难以置信的指标。由于测量气体的灵敏度和准确性,该技术已成为电力公司日常维护活动的标准做法。本文介绍了印度尼西亚地热发电厂四个发电机升压(GSU)变压器的溶解气体分析(DGA)的调查。在每年的例行检查中收集了每台变压器绝缘油的数据,并获得了电厂6年的DGA测量值。采用基于IEEE C57-104和IEC 60599标准的溶解气体分析方法对DGA测量结果进行分析和处理。测量数据的解释采用关键气体、气体比、杜瓦尔三角和四种气体四种方法。Rogers比、Doernenburg比和燃气比组合是本研究中使用的燃气比方法。利用DGA分析方法对发电机升压变压器进行诊断,结果表明,在每种分析方法下,4台变压器均处于不同的状态。本文强调了跟踪DGA历史的重要性,并使用了几种DGA解释方法来增加结果的可信度。
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