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The Circulation Calculation and Analysis of the UHV-HGIS System with the Three-Dimensional Magnetic Field Model

机译:三维磁场模型对UHV-HGIS系统的环流计算与分析

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摘要

Large mount of power loss can be caused by circulation in UHV shells and grounding system due to its high voltage level and large capacity. Taking a certain UHV HGIS switch station as example, the circulation value is obtained and analyzed through building a 3-D finite model of the switch station and analyzing its coupled electromagnetic field. Results of finite analysis and field-circuit coupling method are applied to calculation of circulation and temperature rise in grounding wires. Calculation results show that: the maximum of the shell circulation is about 3500A with the rated current 6300A on the bus. Adoption of bi-layer grounding network can limit the circulation value in the main grounding network to 20A, while 700A in the sub-grounding network. But this method proves no affection on the short wire current. How the vertical grounding electrode deep acts on the circulation value in grounding network is analyzed as well. The results can acts as reference for the UHV HGIS manufacturers.
机译:由于特高压外壳和接地系统中的高电压电平和大容量,其循环可能导致大量的功率损耗。以某特高压HGIS换乘站为例,通过建立换乘站的3D有限模型并分析其耦合电磁场来获得并分析其环流值。将有限分析和现场-电路耦合方法的结果用于计算接地线的环流和温升。计算结果表明:在母线额定电流为6300A的情况下,壳体的最大循环电流约为3500A。采用双层接地网可以将主接地网的环流值限制为20A,而将副接地网的环流值限制为700A。但是这种方法证明对短路电流没有影响。还分析了垂直接地电极深度如何影响接地网络中的循环值。结果可为特高压HGIS制造商提供参考。

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