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首页> 外文期刊>IEEE Transactions on Industry Applications >Equivalent Thermal Conductivity Prediction of Form-Wound Windings With Litz Wire Including Transposition Effects
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Equivalent Thermal Conductivity Prediction of Form-Wound Windings With Litz Wire Including Transposition Effects

机译:用LITZ线的形状缠绕绕组的等效导热性预测包括换件效应

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摘要

Litz wire has been widely used in high-frequency electrical machines and transformers to minimize induced current loss and maintain high efficiency. Its heat dissipation capability can be a key design factor for high-power-density, high-frequency electrical machines. Although litz wire equivalent thermal conductivity has been studied, its transposition arrangement on heat dissipation enhancement is usually neglected. This article focuses on developing an analytical model to predict litz wire equivalent thermal conductivity including transposition effects. 3-D finite element models and hardware experiments are used to validate the proposed analytical model. Fast and accurate litz wire thermal conductivity prediction values can be obtained. The transposed and parallel arrangement effects on litz wire equivalent thermal conductivity are compared and discussed. This study shows that the transposition arrangement could improve litz wire heat dissipation capability by 10% to 30%, demonstrating that electrical machine power density can be potentially increased by up to 14%. The proposed method can advance winding design to push the boundaries of electrical machine power density.
机译:LITZ线已广泛应用于高频电机和变压器,以最大限度地减少诱导电流损失并保持高效率。其散热能力可以是高功率密度,高频电机的关键设计因素。虽然已经研究了LITZ线等同的导热率,但通常忽略其对散热增强的转置装置。本文侧重于开发分析模型,以预测Litz导线等效导热率,包括转置效果。 3-D有限元模型和硬件实验用于验证所提出的分析模型。可以获得快速准确的Litz线导热率预测值。比较和讨论对LITZ线等同热导率的转置和并联排列效果。该研究表明,转置装置可以将Litz线散热能力提高10%至30%,表明电机功率密度可能会增加高达14%。所提出的方法可以推进绕组设计以推动电机功率密度的边界。

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