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The Design of 220kV Substation Grounding Grid with difference soil resistivity using wenner and Schlumberger Methods

机译:用Wenner和Schlumberger方法设计220kV变电站接地网格差异土壤电阻率

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This paper presents the design of 220kV substation grounding grid with difference resistivity soil according to horizontal and vertical two layer soil model is structure using the MALT program of CDEGS Software. The target of this paper is to minimize the touch and step voltages when the resistivity soil is high, in 220kV urban substation pending a direct lightning stroke. Also, it is shown that for a sensor located on the ground, close to 220kV substation, the magnetic field component vertical to the structure can also experience a considerable attenuation, perhaps due to the effect of the induced currents in the substation. The results are confirming by numerical simulations, obtained using NEC-4 and IEEE Guide for Safety in AC Substation Grounding. The step by step procedure for designing 220kV substation grounding grid has been presented for which design parameters were obtained by CDEGS Software.
机译:本文介绍了根据水平和垂直两层土壤模型的220kV变电站接地栅格,垂直电阻率土壤模型是使用CDEGS软件的麦芽计划的结构。本文的目标是在电阻率土壤高,在直接闪电行程中的220kV城市变电站中最小化触摸和阶跃电压。此外,示出了对于位于地面上的传感器,接近220kV变电站,垂直于该结构的磁场分量也可以体验相当大的衰减,也许是由于变电站中的诱导电流的影响。结果通过数值模拟证实,使用NEC-4和IEEE指南获得的AC变电站接地的安全性。已经介绍了设计220kV变电站接地网格的步骤步骤,其中通过CDEGS软件获得了设计参数。

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