Optimized pit configuration for efficient grounding of the power system in high resistivity soils using low resistivity materials

A. Al-arainy, Y. Khan, M. Qureshi, N. Malik, F. Pazheri
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引用次数: 13

Abstract

In an electrical power system, the integrity of the grounding system is very important to maintain a reference point of potential for equipment and personnel safety, to provide a discharge point for lightning currents as well as to prevent excessive high voltages on the power system. Therefore, to maintain ground system effectiveness, proper design, installation and testing of grounding system is required. In Saudi Arabia, the weather is dry and the soil resistivity varies significantly from area to area because the geodetic terrain varies from sea shore to the arid desert and dry mountains. In most of the inland desert areas, the soil resistivity is significantly high and it is difficult to get the low earth resistance with conventional methods. Therefore to get a low value of grounding resistance, a good design of the grounding pit is necessary which can be achieved by using low resistivity materials. When such materials are used, it is important to optimize the pit design in order to have an economical and efficient grounding system. This paper presents a novel technique for finding the optimum size of grounding pits commonly used in the electrical power systems. With this technique, we can easily find out an optimized pit design that can effectively reduce the grounding resistance to an acceptable value. The obtained results can be readily used by engineers to obtain a good earth pit configuration for efficient grounding of the power system in the high resistivity soils by using low resistivity materials (LRM).
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利用低电阻率材料优化了高电阻率土壤中电力系统有效接地的坑形结构
在电力系统中,接地系统的完整性对于保持设备和人员安全的参考电位点,为雷电电流提供放电点以及防止电力系统上的过高电压非常重要。因此,为了保持接地系统的有效性,需要对接地系统进行正确的设计、安装和测试。在沙特阿拉伯,天气干燥,土壤电阻率因地区而异,因为大地测量地形从海边到干旱的沙漠和干燥的山区各不相同。在大多数内陆沙漠地区,土壤电阻率明显偏高,用常规方法难以获得低电阻。因此,为了获得较低的接地电阻值,必须对地坑进行良好的设计,而采用低电阻率材料可以实现这一目标。在使用此类材料时,为了建立一个经济高效的接地系统,对基坑设计进行优化是非常重要的。本文提出了一种电力系统中常用的寻找接地坑最佳尺寸的新方法。利用这种技术,我们可以很容易地找到一个优化的坑设计,有效地将接地电阻降低到一个可接受的值。所得结果可为工程人员在高电阻率土壤中利用低电阻率材料(LRM)获得电力系统有效接地的良好土坑配置提供参考。
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