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A Comprehensive 2D FE-SIBC Model for Calculating the Eddy Current Losses in a Transformer Tank-Wall

机译:用于计算变压器油罐壁中涡流损耗的综合二维FE-SIBC模型

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The calculation of the eddy-current losses is one of the most important aspects that must be considered in the design of transformers and electrical machines. In this paper, a comprehensive 2D finite element (FE) model for calculating the eddy-current losses in a tank-wall of the transformer is presented. The FE model takes into account the Surface Impedance Boundary Condition (SIBC). A detailed 2D-SIBC formulation in terms of the magnetic vector potential is described. The SIBC is incorporated into the FE formulation by using the Galerkin method. An axi-symmetric electromagnetic model of the transformer is solved by applying the SIBC formulation for calculating the loss intensity distribution along the vertical tank-wall. To demonstrate the validity of the SIBC formulation, the results are compared against those computed with a model based on first-order triangular elements. The advantages of using the SIBC formulation in the modeling of power transformers are highlighted.
机译:涡流损耗的计算是变压器和电机设计中必须考虑的最重要方面之一。本文提出了一种用于计算变压器油箱壁中涡流损耗的综合二维有限元(FE)模型。 FE模型考虑了表面阻抗边界条件(SIBC)。描述了根据磁矢量电势的详细2D-SIBC公式。通过使用Galerkin方法将SIBC掺入到FE配方中。通过应用SIBC公式计算沿垂直罐壁的损耗强度分布,可以解决变压器的轴对称电磁模型。为了证明SIBC公式的有效性,将结果与使用基于一阶三角形元素的模型计算的结果进行比较。强调了在电力变压器建模中使用SIBC公式的优势。

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