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Modeling thermal life expectancy of the UK transmission power transformers

机译:模拟英国输电变压器的热寿命

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According to the current operating experiences, the dominating failure mechanism of the UK transmission power transformer population has been verified by the forensic tear-down investigations to be of a random manner. In long term consideration, it is widely acknowledged that due to the thermal aging, the mechanical breakdown of the insulating paper is responsible to the ultimate failure of the transformer. Conventionally the insulating paper's thermal usage shall only be reliably learnt via measuring paper's degree of polymerization (DP) after transformer scrapping, which is infeasible in assessing the active units. In dealing with this problem, a systematic model, based on the thermal model in IEC transformer loading guide 60076-7, is presented in this paper to estimate individual active transformer's thermal life via evaluating its operating condition and thermal design characteristics. The model features the incorporation of the practical aging mechanisms of the insulating paper, and the derivation of the conventionally unknown hot-spot factor (HSF) via utilizing the information gained from scrapped units. As the modeling result, the thermal life expectancy of 185 transformers has been estimated as 83 years. A thermal life matrix is also presented as an attempt to reveal the general trend of the transformer's thermal life under different combinations of load and thermal design characteristic.
机译:根据当前的操作经验,通过法医拆解调查已证实英国输电变压器人群的主要故障机制是随机的。从长期的角度来看,众所周知,由于热老化,绝缘纸的机械故障是导致变压器最终故障的原因。常规上,绝缘纸的热使用只能通过在刮擦变压器后测量纸的聚合度(DP)来可靠地获知,这在评估有源单元时是不可行的。为了解决这个问题,本文提出了一个基于IEC变压器负载指南60076-7中的热模型的系统模型,通过评估其工作条件和热设计特性来估算单个有源变压器的热寿命。该模型的特点是结合了绝缘纸的实际老化机制,并利用从报废单元获得的信息推导了传统上未知的热点因子(HSF)。作为建模结果,估计185个变压器的热寿命为83年。还提出了热寿命矩阵,以试图揭示在负载和热设计特性的不同组合下变压器热寿命的总体趋势。

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