Study of Soil Resistivity using Wenner Four Pin Method: Case Study

M. S. Sazali, C. Wooi, S. Arshad, T. Wong, Z. Abdul-Malek, H. Nabipour-Afrouzi
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Abstract

Soil resistivity is usually measured at the selected site either for new installation or in the existing grounding system. In this paper, soil resistivity test has been done to study the soil resistivity around the 33 kV substation according to IEEE 81-1983 standard. A factory site located in Kulim Hi-tech, Malaysia has been selected to research on the soil resistivity. The soil resistance measured in this study is then be calculated in using the soil resistivity formula. The soil resistivity shows that the longer the distance between rods, the lower the resistivity of soil due to larger soil volume. The lowest soil resistivity around the substation is 3.454 Ω.m, which is on the left side of the substation with a distance of 5 meters between the rods followed by front side with 15.71 Ω.m, right side with 34.243 Ω.m and backside with 45.239 Ω.m. While the highest soil resistivity is 176.306 Ω.m on the right side of the substation with a 2-meter distance between each rod.
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用温纳四针法研究土壤电阻率:个案研究
土壤电阻率通常在新装置或现有接地系统的选定地点测量。本文根据IEEE 81-1983标准,对33kv变电站周围的土壤电阻率进行了试验研究。位于马来西亚Kulim高科技公司的一个工厂场地被选中进行土壤电阻率的研究。然后用土壤电阻率公式计算本研究测得的土壤电阻。土壤电阻率表明,杆距越长,土壤体积越大,土壤电阻率越低。变电站周围土壤电阻率最低为3.454 Ω。M,位于变电站左侧,杆距为5米,前面为15.71 Ω。M,右边是34.243 Ω。M和背面有45.239 Ω.m。土壤电阻率最高为176.306 Ω。M在变电站右侧,每根杆之间的距离为2米。
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