A new winding homogenization method based on thermal resistance concept

COMPEL Pub Date : 2024-04-01 DOI:10.1108/compel-08-2023-0328
Ali Hashemi, Parsa Yazdanpanah Qaraei, Mostafa Shabanian-Poodeh
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Abstract

Purpose

The aim of this paper is to provide a simple yet accurate and efficient geometric method for thermal homogenization of impregnated and non-impregnated coil winding technologies based on the concept of thermal resistance.

Design/methodology/approach

For regular windings, the periodic microscopic cell in the winding space is identified. Also, for irregular windings, the average microscopic cell of the winding is determined. An approximation is used to calculate the thermal resistance of the winding cell. Based on this approximation, the winding insulation is considered as a circular ring around the wire. Mathematical equations are obtained to calculate the equivalent thermal resistance of the cell. The equivalent thermal conductivity of the winding is calculated using equivalent thermal resistance of the cell. Winding thermal homogenization is completed by determining the equivalent thermal properties of the cell.

Findings

The thermal pattern of different windings is simulated and compared with the results of different homogenization methods. The results show that the proposed method is applicable for a wide range of windings in terms of winding scheme, packing factor and winding insulation. Also, the results show that the proposed method is more accurate than other winding homogenization methods in calculating the equivalent thermal conductivity of the winding.

Research limitations/implications

In this paper, the change of electrical resistance of the winding with temperature and thermal contact between the sub-components are ignored. Also, liquid insulators, such as oils, and rectangular wires were not investigated. Research in these topics is considered as future work.

Originality/value

Unlike other homogenization methods, the proposed method can be applied to non-impregnated and irregular windings. Also, compared to other homogenization methods, the proposed method has a simpler formulation that makes it easier to program and implement. All of these indicate the efficiency of the proposed method in the thermal analysis of the winding.

基于热阻概念的新型卷绕均匀化方法
目的 本文旨在根据热阻的概念,为浸渍和非浸渍线圈绕组技术的热均匀化提供一种简单而准确有效的几何方法。此外,对于不规则绕组,要确定绕组的平均微观单元。使用近似值计算绕组单元的热阻。根据这一近似值,绕组绝缘层被视为围绕导线的圆形环。通过数学公式可以计算出单元的等效热阻。利用电池的等效热阻计算出绕组的等效热导率。通过确定电池的等效热特性,完成绕组热均匀化。结果表明,就绕组方案、包装系数和绕组绝缘而言,所提出的方法适用于各种绕组。研究局限/意义 本文忽略了绕组电阻随温度的变化以及子部件之间的热接触。此外,本文也没有研究液态绝缘体(如油)和矩形导线。独创性/价值与其他均质化方法不同,所提出的方法可用于非浸渍和不规则绕组。此外,与其他均匀化方法相比,所提出的方法具有更简单的表述,使其更易于编程和实施。所有这些都表明了所提方法在绕组热分析中的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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