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Numerical investigation of 3D flow and thermal effects in a disc-type transformer winding

机译:盘式变压器绕组中3D流动和热效应的数值研究

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摘要

In this study, 3D Conjugate Heat Transfer simulations are performed to determine the flow and temperature distributions in a disc-type transformer winding. The results show that important three-dimensional phenomena exist due to the presence of the sticks and duct spacers and thus the flow in the cooling ducts cannot be considered axisymmetric. Moreover, the duct spacers prevent a portion of the disc surface from being in contact with the cooling fluid and consequently the insulation paper directly underneath them is at almost the same temperature as the copper conductor. Therefore, the results seem to support the common practice of placing sensors under a duct spacer to measure winding temperatures. Although 3D computations are very valuable, they are quite costly from a numerical perspective and for this reason a simulation strategy that improves the predictions of a 2D model is also presented and tested in the current paper.
机译:在这项研究中,进行了3​​D共轭传热仿真,以确定盘式变压器绕组中的流量和温度分布。结果表明,由于存在棒和管道间隔器,因此存在重要的三维现象,因此不能将冷却管道中的流动视为轴对称的。而且,管道隔离件防止了盘表面的一部分与冷却液接触,因此,在其正下方的绝缘纸处于与铜导体几乎相同的温度。因此,该结果似乎支持将传感器放置在管道隔板下以测量绕组温度的常规做法。尽管3D计算非常有价值,但从数值角度来看它们非常昂贵,因此,当前的论文中还提出并测试了一种改进2D模型预测的仿真策略。

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