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An algorithm for fast calculation of short circuit forces in high current busbars of electric arc furnace transformers based on method of images

机译:基于图像的快速计算电弧炉变压器大电流母线短路力的算法

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This paper proposes an algorithm for the calculation of short circuit forces on the high current busbars of electric arc furnace (EAF) transformers based on the method of images using an analytical solution for the electromagnetic force between two adjacent current carrying rectangular conductor. The theory of images is used to account for the impact of the tank walls on the short circuit forces on the busbars. The proposed method uses an iterative algorithm and increases the number of image layers to achieve the desired accuracy. A30 MVA EAF transformer is investigated as a case study and the results are compared to 2D finite element analysis (FEA). ANSYS software is used for the FEA. The proposed algorithm converges very fast, so that only in its first iteration, the convergence error is less than 0.2%. The comparisons show that the short circuit force calculations using the proposed method, conform to the 2D FEA results. However, the short-circuit calculation time using the proposed method is about 20 times faster than the 2D FEA with the same relative error. Therefore it can be used as a faster alternative for the FEA. The proposed method is characterized by fast convergence, simple calculations and high precision. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文提出了一种基于图像方法的解析方法,用于计算两个相邻载流矩形导体之间的电磁力,从而计算电弧炉(EAF)变压器大电流母线上的短路力。图像理论用于说明储罐壁对母线上的短路力的影响。所提出的方法使用迭代算法并增加图像层的数量以达到期望的精度。作为案例研究了A30 MVA EAF变压器,并将结果与​​2D有限元分析(FEA)进行了比较。 ANSYS软件用于FEA。所提出的算法收敛非常快,因此仅在其第一次迭代中,收敛误差才小于0.2%。比较结果表明,所提方法的短路力计算结果与二维有限元分析结果吻合。但是,使用该方法的短路计算时间比具有相同相对误差的2D FEA快约20倍。因此,它可以用作FEA的更快替代方案。该方法具有收敛速度快,计算简单,精度高的特点。 (C)2016 Elsevier B.V.保留所有权利。

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