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Significance of localized soil resistivity in designing a grounding system

机译:局部土壤电阻率在设计接地系统中的意义

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摘要

The value of soil resistivity is an essential pre-requisite in designing an electrical grounding system. The current practice, as advocated even by national/international standards involves taking the average soil resistivity of the site as the parameter to be considered in designing the grounding system. This study shows that average soil resistivity may lead to significant overestimation or underestimation in the designing process as the localized soil resistivity may significantly differ from the average soil resistivity of the entire site. At least 14% difference between average and localized soil resistivity were obtained base on measurements done on five locations. Therefore, it is suggested that electrical engineers who design grounding systems should first identify the locations where the components of the grounding systems will be installed. Then, the localized soil resistivity at that particular point should be measured and the sizing and geometry of the grounding electrode should be designed accordingly.
机译:土壤电阻率的值是设计电气接地系统的必要先决条件。正如国家/国际标准所提倡的那样,当前的做法是将场地的平均土壤电阻率作为设计接地系统时要考虑的参数。这项研究表明,在设计过程中,平均土壤电阻率可能会导致明显的高估或低估,因为局部土壤电阻率可能与整个场地的平均土壤电阻率明显不同。根据在五个位置进行的测量,平均和局部土壤电阻率之间至少相差14%。因此,建议设计接地系统的电气工程师应首先确定接地系统组件的安装位置。然后,应测量该特定点的局部土壤电阻率,并据此设计接地电极的尺寸和几何形状。

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