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Estimation of Equivalent Thermal Conductivity for Impregnated Electrical Windings Formed from Profiled Rectangular Conductors

机译:浸渍矩形导体形成的浸渍电绕组等效导热率的估计

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In order to improve accuracy and reduce model setting-up and solving time in thermal analysis of electrical machines, transformers and wound passive components, the multi-material winding region is frequently homogenised. The existing winding homogenization techniques are predominantly focused on winding constructions with round conductors, where thermal conductivity across conductors is usually assumed to be isotropic. However, for the profiled rectangular conductors that assumption is no longer valid, and anisotropy of the winding equivalent thermal conductivity needs to be considered. This paper presents analytical methods for deriving equivalent thermal properties of impregnated windings with profiled rectangular conductors. The techniques allow for computationally efficient and accurate derivation of the composite thermal conductivity accounting for the material thermal anisotropy. Efficacy of the methods has been demonstrated on a number of hardware winding samples commonly used in low-voltage applications. The theoretical analysis has been supplemented with experimentally derived data showing close correlation.
机译:为了提高电机,变压器和缠绕无源部件的热分析中的精度和降低模型设置和解决时间,多重绕组区域经常均化。现有的绕组均质化技术主要集中在圆形导体上的绕组结构上,其中通常认为导体的导热性是各向同性的。然而,对于突出的矩形导体,假设不再有效,并且需要考虑绕组等效导热率的各向异性。本文介绍了利用轮廓矩形导体导出浸渍绕组等效热特性的分析方法。该技术允许用于材料热各向异性的复合导热率算相的计算上高效且准确的推导。已经在低压应用中使用的许多硬件绕组样本证明了该方法的功效。理论分析已经补充了实验衍生的数据,显示出密切相关。

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