使用FEMM的三相变压器表示,以及气隙计算的方法

E. Saraiva, M. Chaves, J. Camacho
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引用次数: 18

摘要

这项工作涉及到用FEMM(电磁学的有限元方法)在二维中表示三相和三肢变压器。变压器磁化曲线是利用装配变压器铁芯时所用硅钢的磁化特性得到的,它与装配过程中固有的气隙有关。提出了一种计算气隙磁阻的方法,该方法基于变压器的磁路,通过空载试验得到各绕组的磁化电流波形的最大值。分析了磁通在各量值中的分布以及固有气隙对磁化电流的影响。通过使用后处理程序,计算出变压器的漏抗,并与实验方法得到的值进行比较。因此,目标之一是解释一种在计算机模型中插入一些变压器组装缺陷的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Three-phase transformer representation using FEMM, and a methodology for air gap calculation
This work deals with the representation of three-phase and three-limb transformers in two dimensions using FEMM (finite element methods on magnetics). The transformer magnetization curve is obtained using the magnetization characteristic for the silicon steel used when assembling the transformer core, associated to the air gaps inherent to the assembling process. A method for the calculation of the air gaps reluctance is presented and it is based on the transformer magnetic circuit and on the maximum value in each winding for the magnetization current waveform, such current is obtained through the no-load test. The magnetic flux distribution in the values and the effects of inherent air gaps in the magnetization current is analyzed. Through the use of post-processing procedures, the transformer leakage reactance is calculated and compared with values obtained through the experimental method. Therefore, one of the objectives, is to explain a method to insert some of the transformer assembling imperfections in the computer model.
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