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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Mechanical Force Analysis in Heavy-Current HTS Transformers Based on Field and Current Nonuniformity Coupled Analysis
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Mechanical Force Analysis in Heavy-Current HTS Transformers Based on Field and Current Nonuniformity Coupled Analysis

机译:基于场和电流非均匀耦合分析的大电流高温超导变压器机械力分析

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摘要

Mechanical stresses of magnetically induced origins are becoming more serious with the trend of high-temperature superconductor (HTS) heavy-current transformer (HCT) applications. Mechanical forces in HTS HCTs that act on the transformer windings are generated by the interaction between the current density and the leakage flux density. This paper presents the calculation of leakage flux and mechanical force distribution in high-current HTS transformer windings. This requires the need for advanced numerical techniques for simulation studies using finite-element method by adapting two auxiliary windings for the leakage flux mitigation and, thereby, mechanical forces within the main windings. A model is developed for the calculation of mechanical force considering nonuniformity of both field and current distributions in the windings, which is the main motivation for initiating this paper.
机译:随着高温超导体(HTS)大电流互感器(HCT)应用的趋势,磁感应起源的机械应力变得越来越严重。 HTS HCT中作用在变压器绕组上的机械力是由电流密度和漏磁通密度之间的相互作用产生的。本文介绍了大电流HTS变压器绕组中的漏磁通和机械力分布的计算。这需要使用有限元方法进行仿真研究的先进数值技术,方法是通过适配两个辅助绕组来减小漏磁通,从而调节主绕组内的机械力。考虑到磁场和绕组中电流分布的不均匀性,开发了一个用于计算机械力的模型,这是开始本文的主要动机。

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