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Earth Grid Design for 400KV Neiuwehoop Substation Using CDEGS Platform

机译:使用CDEGS平台的400KV Neiuwehoop变电站的接地网设计

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The earth grid design for substations is pivotal for substation design, particularly in high resistivity soil where resistance on the lowest layer is greater than the upper gradation soil. In this paper, a 400kV Neiuwehoop substation earth grid design is presented using Current Distribution Electromagnetic Field Grounding Soil Structure Analysis Software (CDEGS) platform. The four-electrode Wenner method is used to determine the soil resistivity distribution. For an estimated single-phase system fault current of 40kA at 0.5second, the touch potential design of $0 Omega$ and the foot resistance of $0.5mathrm{k} Omega$ are determined. The step potential of 262.6V and touch potential of 186.5V is found. The ground potential rise of 15.942kV relatively correlates with the calculated as well as measurements obtained.
机译:变电站的接地网设计对于变电站设计至关重要,特别是在高电阻率土壤中,最低层的电阻大于上层土壤。本文使用电流分布电磁场接地土壤结构分析软件(CDEGS)平台,提出了一个400kV Neiuwehoop变电站的接地网设计。用四电极Wenner方法确定土壤电阻率分布。对于估计的0.5秒时40kA的单相系统故障电流,触摸电位设计为 $ 0 \ Omega $ 和脚的阻力 $ 0.5 \ mathrm {k} \欧米茄$ 确定。找到262.6V的步进电位和186.5V的触摸电位。接地电位上升15.942kV与计算得出的值和测量值相对相关。

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