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Condition monitoring of in-service oil-filled transformers: Case studies and experience

机译:在用油浸式变压器的状态监控:案例研究和经验

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摘要

Transformers are one of the most strategic components in balancing the voltage levels and hence a high priority is given to their performance [1]. It is established that, insulation technology plays a critical role in judging the performance and service life in oil filled apparatus [2]. Performance of the insulation system depends mainly on the deterioration behavior of insulation oil and paper. The mechanisms that are responsible for premature aging of oil/paper insulation are almost the same in all the oil filled apparatus. Yet, there will be a significant difference in the intensity of the aging mechanisms in different apparatus. This intensity is attributable to rating, design, and duration of operation for different machines. The detailed discussions on these mechanisms are presented in the subsequent sections of this paper. However, aging of service insulants is unavoidable and is to be maintained at a lower rate or arrested to the greatest possible extent, such that, catastrophic failures and unscheduled outages may be mitigated [3]. Normally, utilities follow scheduled condition monitoring activities to avoid the consequences of premature aging. Hence, knowledge on these in-service condition monitoring activities will be helpful in understanding the exact deterioration rate of the insulation system. Real time in-service experience of several transformer fleets that belong to United Kingdom utilities are reported in [4]. An early degradation of insulation is noticed through increase in acidity and furan concentration in oil for several transformers in the fleet. Authors investigated this early degradation in different perspectives including loading conditions, manufacturers, and oil chemistry changes. It is inferred that changes in oil chemistry is an important attribute for early degradation and hence utilities are advised to adopt different asset management strategies for affected and unaffected transformers in a fleet. Recently, failure rate data of service aged transformer fleets of an Australian utility were analyzed to establish the relationship between aging and different failure types [5]. It is noticed that degradation of the insulation system will be rapid after 20 years of service aging thus entailing the frequent condition monitoring activities after 20 years to identify premature aging failures.
机译:变压器是平衡电压水平中最具战略意义的组成部分之一,因此,其性能应优先考虑[1]。已经确定,绝缘技术在判断充油设备的性能和使用寿命中起着至关重要的作用[2]。绝缘系统的性能主要取决于绝缘油和纸的劣化行为。在所有注油的设备中,造成油/纸绝缘体过早老化的机理几乎相同。然而,在不同设备中老化机制的强度将存在显着差异。这种强度可归因于不同机器的等级,设计和运行时间。这些机制的详细讨论将在本文的后续部分中介绍。但是,服务绝缘材料的老化是不可避免的,应保持较低的速率或最大程度地加以阻止,从而可以减轻灾难性故障和计划外的停机[3]。通常,公用事业公司会按照计划的状态监视活动进行操作,以避免过早老化的后果。因此,有关这些在役状态监测活动的知识将有助于理解绝缘系统的确切劣化率。在[4]中报告了属于英国公用事业的几个变压器车队的实时服务经验。通过增加车队中几个变压器的酸度和呋喃浓度,可以发现绝缘的早期退化。作者从不同的角度研究了这种早期降解,包括装载条件,制造商和石油化学变化。据推测,石油化学的变化是早期退化的重要属性,因此,建议公用事业公司针对车队中受影响和未受影响的变压器采用不同的资产管理策略。最近,对澳大利亚一家公用事业公司的服务老化变压器组的故障率数据进行了分析,以建立老化与不同故障类型之间的关系[5]。值得注意的是,绝缘系统在使用20年后将迅速退化,因此需要进行20年后的频繁状态监测活动,以识别过早的老化故障。

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