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Simulation of impact of vertical grounding electrode on impulse grounding resistance of substation grounding network

机译:垂直接地电极对变电站接地网络冲击接地电阻影响的仿真

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In order to study the influence of vertical grounding electrode on impulse grounding resistance of substation ground network, the grounding model was built in COMSOL, and the impulse grounding resistances of substation grounding grid in different distribution, length and quantity of vertical grounding electrode were simulated and calculated. The results show that the closer the vertical ground to the lightning current injection point is, the smaller the impact grounding resistance is. The impulse grounding resistance, that has a minimum value, decreases first and then increases with the increase of the vertical grounding electrode length. When the additional vertical grounding electrodes are placed in accordance with the evacuation outside and internal density manner within a certain region ranging from the lightning current injection point, the impact grounding resistance has the best reduction effect.
机译:为了研究垂直接地电极对变电站接地网络脉冲接地电阻的影响,在COMSOL中建立了接地模型,并模拟了不同分布,长度和数量的垂直接地电极在变电站接地网中的脉冲接地电阻。计算。结果表明,垂直接地距离雷电流注入点越近,冲击接地电阻越小。最小值的脉冲接地电阻随着垂直接地电极长度的增加先减小然后增大。当按照疏散外部和内部密度的方式将附加的垂直接地电极放置在从雷电流注入点开始的某个区域内时,冲击接地电阻具有最佳的减小效果。

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