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The simulation research on the impulse characteristics of the grounding electrode in the layered soil

机译:层状土壤中接地电极冲击特性的仿真研究

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摘要

The research on the impulse characteristics of the grounding electrode is basically proceed in the soil with single uniform resistivity, but the composition of the tower's grounding system is always with several layers. It is contributed to the judgment of the computation and experiment result by clarifying the difference of two kinds of the impulse characteristics. The simulation experiments of the grounding electrode's impulse characteristics need to be proceeded on the soil with different resistivity. The soil in the simulation experiments need to be replaced many times. It will spend plenty of manpower, material resources and time to replace the whole soil in the simulation area with great size. The article presents a scheme of partial replacement of the soil with only changing the soil of peripheral region of the electrode. The simulation area with the scheme of partial replacement of the soil is a pattern with double-layer. The article has a simulation study on the impulse characteristics of single and double-layer's soil pattern via modeling. The result shows that with the increase of the up layer's soil area, the impulse characteristics of the double-layer's soil pattern have an approaching relationship to the single soil pattern. The paper indicates that the scheme of partial replacement of the soil when having the impulse experiment is feasible and obtains the best scheme.
机译:接地电极的脉冲特性的研究基本上是在单一电阻率的土壤中进行的,但塔架接地系统的组成始终是多层的。通过澄清两种脉冲特性的差异,有助于计算和实验结果的判断。需要在不同电阻率的土壤上进行接地电极脉冲特性的模拟实验。模拟实验中的土壤需要多次更换。在模拟区域中以大尺寸替换整个土壤将花费大量的人力,物力和时间。该文章提出了仅更换电极周边区域的土壤就可以部分替换土壤的方案。具有部分土壤置换方案的模拟区域是双层模式。本文通过建模对单层和双层土壤模式的冲激特性进行了仿真研究。结果表明,随着上层土壤面积的增加,双层土壤模式的冲激特性与单层土壤模式具有接近的关系。指出在进行脉冲试验时,对土壤进行部分置换的方案是可行的,并获得了最佳方案。

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