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Effect of higher insulation material thermal conductivity on transformer temperature rise

机译:绝缘材料热导率对变压器温度升高的影响

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Various types of solid insulation materials are used in the transformer design. While dielectric and mechanical properties of materials are the most important ones to consider in the transformer design, the thermal conductivity of material affects the temperature rise of transformers by determining the thermal resistance of heat transfer from conductor to the ambient. With the continuous new material development including nanocomposites, progresses were made to increase the thermal conductivity of insulation materials both at research labs and in commercial products. This type of development, however, could not be used in product design directly due to the lacking of understanding about how the increased thermal conductivity would benefit actual electrical equipment design such as transformers. Specifically, what is unclear is a quantitative understanding of the impact of higher insulation thermal conductivity on transformer temperature rises. In this study, the topic was addressed from simulations based on thermal network modelling. The effect of increased solid insulation thermal conductivity on transformer temperature rises was studied with different transformer types including liquid filled transformer and dry type transformer, transformer rating, winding type and designs. Several conclusions have been drawn from the study for practical guidance on transformer design using solid insulation materials with higher thermal conductivity.
机译:各种类型的固体绝缘材料用于变压器设计。虽然材料的电介质和机械性能是在变压器设计中考虑的最重要的,但是材料的导热率通过确定从导体的热传递到环境温度的热阻来影响变压器的温度升高。通过连续的新材料开发,包括纳米复合材料,进行了进展,以提高研究实验室和商业产品的绝缘材料的导热率。然而,这种类型的开发不能直接在产品设计中使用,因为缺乏关于增加的导热系数如何有利于变压器这样的实际电气设备设计。具体而言,目前尚不清楚的是对较高绝缘导热性对变压器温度升高的影响的定量理解。在本研究中,该主题是根据热网络建模的仿真解决的。采用液体填充变压器和干式变压器,变压器等级,绕组型和设计,研究了液体绝缘热导率提高对变压器温度升高的影响。采用具有较高导热率的固体绝缘材料的变压器设计的实际指导研究,已经从研究的实际指导研究中得出了若干结论。

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