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Calculation of magnetic shielding of a substation at power frequency using FEM

机译:用有限元法计算变电站工频电磁屏蔽

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The finite element method (FEM) is used for analyzing the shielding effectiveness of an eddy current shield applied to a 10/0.4 kV substation. The influence of the shield extension is studied, and a calculated magnetic field attenuation of 30 dB is obtained for a 5 mm aluminum shield applied on the ceiling and the walls. With a 3D model, the eddy current distribution in the shield is studied, giving guidance for door positioning. Here, the insertion of a door in the shielded wall off the paths of the main eddy currents is found to create only a locally elevated magnetic field. With a simplified 2D model, the influence of shield conductivity is also analyzed. An increase of the conductivity over that of aluminum here gives a limited shielding improvement.
机译:有限元方法(FEM)用于分析应用于10 / 0.4 kV变电站的涡流屏蔽的屏蔽效果。研究了屏蔽扩展的影响,对于在天花板和墙壁上使用的5 mm铝屏蔽,计算得出的磁场衰减为30 dB。使用3D模型,研究了屏蔽层中的涡流分布,为门的定位提供了指导。在此,发现在主涡流路径之外的屏蔽壁中插入门只会产生局部升高的磁场。使用简化的2D模型,还可以分析屏蔽电导率的影响。在此,电导率相对于铝的电导率的增加有限地改善了屏蔽。

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