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Estimation of an Upper Bound to the Value of the Step Potentials in Two-Layered Soils from Grounding Resistance Measurements

机译:从接地电阻测量值估算两层土壤中阶梯电位的上限

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摘要

Due to the constant updating of regulatory standards on safety issues in electrical installations, limits are established for the maximum step potential that an installation can hold in a ground fault situation. In this paper, an upper bound to the maximum value of the step potentials arising in the soil surface when a fault takes place in a grounded electrical installation is estimated by means of a simple procedure. The direct measurement of the grounding electrode resistance together with some information about the soil resistivity and the knowledge of characteristic parameters of the electrode are used for the calculation of that upper bound. The procedure is tested at numerical simulation level by using different electrodes in several different scenarios corresponding to two-layered soils with different resistivity ratios. The dependency of the calculated upper bound with the electrode burial depth is also studied. Finally, a real case study is presented, and the results of the field measurements are shown as an example of the validity of the procedure.
机译:由于不断更新有关电气设备安全问题的法规标准,因此对设备在接地故障情况下可以保持的最大步进电位设定了限制。在本文中,通过简单的程序就可以估算出接地电气设备中发生故障时在土壤表面产生的阶跃电位最大值的上限。接地电极电阻的直接测量以及有关土壤电阻率的一些信息和电极特征参数的知识都用于计算该上限。通过在对应于具有不同电阻率比的两层土壤的几种不同情况下使用不同的电极,在数值模拟水平上对该程序进行了测试。还研究了计算的上限与电极埋藏深度的相关性。最后,提出了一个实际案例研究,并以现场测量的结果为例说明了该程序的有效性。

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