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Circuit-Based Model Grounding Electrode Considering Frequency Dependent of Soil Resistivity and Relative Permittivity

机译:基于电路的模型接地电极考虑频率取决于土壤电阻率和相对介电常数

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Abstract This paper presents the simulation of circuit-based horizontally oriented grounding electrodes with the consideration of frequency dependence of soil resistivity and permittivity. The frequency dependent circuit parameters were determined by the equations given by Sunde and Dwight, while the frequency dependent properties (soil resistivity and relative permittivity) were modeled according to Scott model. Results obtained show that the voltage response is highly affected by the soil resistivity, especially at high soil resistivity value, which in this study, the highest value is 2000 Ωm. This work also considers the front time of the current to study the effect of current front time to the response, and it was found that the faster the current front time, the more significant difference of peak voltage between frequency dependent and frequency independent models is obtained. Obviously, the current circuit-based model (frequency independent model) tends to provide overestimated results. Therefore, the effect of frequency on the soil resistivity and relative permittivity should not be neglected when determining the transient performance of grounding electrode in order to obtain accurate results.
机译:摘要本文介绍了考虑土壤电阻率和介电常数的频率依赖性电路基水平定向接地电极的仿真。频率相关电路参数由Sunde和Dwight给出的等式确定,而频率依赖性(土壤电阻率和相对介电常数)根据Scott模型进行建模。得到的结果表明,电压响应受土壤电阻率的高度影响,特别是在本研究中的高土壤电阻率值,最高值为2000Ωm。这项工作还考虑了当前的前期,研究当前前续时间对响应的影响,并且发现当前的前时间越快,频率相关和频率独立模型之间的峰值电压差异更大。 。显然,基于电路的基于电路的模型(频率独立模型)倾向于提供高估结果。因此,在确定接地电极的瞬态性能以获得准确的结果时,不应忽略频率对土壤电阻率和相对介电常数的影响。

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