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PARAMETRIC ANALYSIS ON GROUND LEVEL SAFETY NEAR STEEL POLES UNDER FAULT CONDITIONS

机译:故障条件下钢极附近地面安全的参数分析

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When a fault occurs on a distribution or transmission steel pole, the faulted pole or the adjacent poles can be subjected to very high ground potential rise. The earth surface voltage gradient near the tower is increased and could represent a hazard for a worker or a person who is touching the pole or just happens to be nearby. Appropriate pole grounding design may represent a relatively simple, durable, and economic solution. This paper carries out a detailed parametric analysis that shows how the grounding system can effectively reduce the touch and step voltages on the pole ground level. Generally speaking, installing a buried grounding loop around the pole decreases the touch voltages but increases the step voltages. Increasing the grounding system radius can improve the touch voltage tremendously without increasing significantly the step voltage. Significant variations in soil resistivity with depth have important impact on the performance of the grounding system. Burying the grounding system in a relative low soil resistivity layer can maximize the effectiveness of the grounding system for both touch and step voltages. Not surprisingly, the presence of bare metallic pipes in a residential or urban areas improves the touch and step voltages considerably.
机译:当在分配或透射钢杆上发生故障时,故障杆或相邻杆可以受到非常高的地电位升高。塔附近的地球表面电压梯度增加,可以为工人或触摸杆子的人表示危险,或者恰好就在附近。适当的极点接地设计可以代表相对简单,耐用的和经济的解决方案。本文进行了详细的参数分析,显示了接地系统如何有效地降低极地电平上的触摸和阶跃电压。一般而言,在极距杆周围安装掩埋接地环会降低触摸电压,但增加了阶跃电压。增加接地系统半径可以极大地提高触摸电压而不会显着增加阶梯电压。对深度的土壤电阻率的显着变化对接地系统的性能产生了重要影响。将接地系统埋在相对低土壤电阻率层中可以最大化接地系统的触摸和阶跃电压的有效性。毫不奇怪,住宅或城市地区裸金属管的存在显着改善了触摸和阶跃电压。

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