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Temperature distribution in foil winding for ventilated dry-type power transformers

机译:通风干式电力变压器箔绕组中的温度分布

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Predicting temperatures of transformers is important in order to prevent the deterioration of electrical insulation since the life of the transformers corresponds with that of the insulation. Reports of thermal behavior of ventilated dry-type transformers are rare in the literature. In particular, foil winding has received little attention despite their wide usage in practice. In this study, a thermal model for foil winding was proposed and temperature distributions were determined by the finite element method (FEM). In order to cope with the non-uniformity of the heat fluxes in the foil winding due to induced currents, different convection coefficients and varying air temperature along the vertical height of the foil winding were suggested and applied to the thermal model. The thermal model was solved by coupling it with the electromagnetic model to calculate the non-uniform power losses. The model was applied to a ventilated dry-type power transformer rated at 2000 kVA. Experimental temperatures were measured with thermocouples, and used to verify the finite element results. They showed reasonable agreement and will provide a useful tool for transformer engineers.
机译:为了防止电绝缘性能下降,预测变压器的温度很重要,因为变压器的寿命与绝缘的寿命相对应。通风的干式变压器的热性能报告在文献中很少。特别地,尽管箔缠绕在实践中得到了广泛的使用,但很少受到关注。在这项研究中,提出了箔缠绕的热模型,并通过有限元方法(FEM)确定了温度分布。为了应对感应电流引起的箔绕组中热通量的不均匀性,提出了不同的对流系数和沿箔绕组垂直高度变化的空气温度,并将其应用于热模型。通过将热模型与电磁模型耦合以计算非均匀功率损耗来解决热模型。该模型应用于额定功率为2000 kVA的通风干式电力变压器。用热电偶测量实验温度,并用于验证有限元结果。他们表现出合理的共识,并将为变压器工程师提供有用的工具。

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