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Hot spot temperature models based on top-oil temperature for oil immersed transformers

机译:基于顶油温度的油浸式变压器热点温度模型

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Thermal behaviors of transformers have a close relationship with the ageing processes of transformer insulation. In oil immersed transformers, feature temperatures such as top-oil temperature and hot spot temperature are recommended to be monitored online. To minimize the risk of failure and to extend the serving life time of transformers, both temperature rises should be controlled within certain range. However, it is difficult to monitor the hot spot temperature of the transformer. Commonly used method is to calculate the rise of the hot spot temperature based on top-oil temperature rise, as recommended in GB/T15164-94 (Chinese standard) and IEEE C57.91. Later on, electrical-thermal analogy models were developed and proved to be accurate in practice. These electrical-thermal models present heat transfer in the transformers as thermal circuits, where each component represents different thermal distribution in the transformers. General model for the thermal circuits were improved by combining fluid transfer theory into the exponential factors. This paper provides an experimental result which was measured from a 5 kV, 100 kVA transformer equipped with fiber optic probes and thermocouples. The paper also summarizes the most often used models for top-oil temperature and especially hot spot temperature calculation. Comments on both models are given in the paper.
机译:变压器的热性能与变压器绝缘的老化过程密切相关。对于油浸式变压器,建议在线监测特征温度,例如顶油温度和热点温度。为了最大程度地降低故障风险并延长变压器的使用寿命,应将两个温升都控制在一定范围内。但是,很难监视变压器的热点温度。常用的方法是根据GB / T15164-94(中国标准)和IEEE C57.91的建议,根据顶油温度的升高来计算热点温度的升高。后来,开发了电热模拟模型,并在实践中证明是准确的。这些电热模型将变压器中的热传递表示为热回路,其中每个组件代表变压器中的不同热分布。通过将流体传递理论结合到指数因子中,改进了热回路的通用模型。本文提供了一个实验结果,该结果是从配备有光纤探头和热电偶的5 kV,100 kVA变压器中测得的。本文还总结了最常用的顶油温度模型,尤其是热点温度计算模型。本文对这两种模型进行了评论。

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