Normalization of Double-Circuit Overhead Line Magnetic Field inside Khrushchev Building

K. Chunikhin, V. Grinchenko
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Abstract

This paper deals with the mitigation of 110 kV double-circuit overhead line magnetic field inside five-story Khrushchev buildings. We show that the magnetic field can exceed the reference level 0.5 μT in 90 % part of living space. To mitigate the magnetic field, we propose the inverted L-shaped grid shield with conductors on the wall and in the attic of the building. Using the analytical model of the grid shield and the numerical simulation, we determine the parameters of the L-shaped grid shield which provides the magnetic field normalization in 97 % part of living space. Further improvement of the grid shield profile, in particular, the placement of some conductors in the basement, allows to reduce the quantity of metal of the shield by 15 % while maintaining the shielding efficiency. Also we consider the magnetic field normalization for the overhead line with a rated current of 500 A. In this case, the quantity of metal of the grid shield increases 2.74 times.
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赫鲁晓夫大厦内双回架空线磁场归一化
本文研究了赫鲁晓夫五层建筑内110千伏双回架空线路磁场的缓解问题。结果表明,在90%的生活空间内,磁场可以超过参考水平0.5 μT。为了减轻磁场,我们建议在墙壁和建筑阁楼上设置带导体的倒l形网格屏蔽。利用网格屏蔽的解析模型和数值模拟,确定了在97%的生活空间内提供磁场归一化的l型网格屏蔽的参数。进一步改进网格屏蔽轮廓,特别是在地下室放置一些导体,可以在保持屏蔽效率的同时减少15%的屏蔽金属数量。同时考虑额定电流为500a的架空线的磁场归一化。在这种情况下,栅格屏蔽的金属量增加了2.74倍。
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