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Numerical and Experimental Investigation of Grounding Electrode Impulse-Current Dispersal Regularity Considering the Transient Ionization Phenomenon

机译:考虑瞬态电离现象的接地电极脉冲电流弥散规律的数值和实验研究

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摘要

This paper presents a numerical method, combined the finite element method in the spatial domain with the finite difference time domain, to calculate the transient impulse response of grounding systems considering the ionization phenomenon. In this numerical method, space-time variable soil resistivity is used to simulate the soil ionization phenomenon where soil resistivity is controlled according to its relationship with the local instantaneous value of the electric field and no a priori hypothesis on the geometrical shape of the ionized region around the electrodes is necessary. Based on the widely accepted principle of dimensional similarity, this paper makes simulated experimental investigations on the impulse-current dispersal regularity of grounding electrodes with various structures. The proposed numerical scheme is validated by comparing computed results with experimental results and simulation results in literature. Based on the measurement and simulation results, the impulse response regularity of grounding electrodes is discussed and the effect of ionization on human and installations safety is reported.
机译:本文提出了一种数值方法,将空间域中的有限元方法与有限差分时域相结合,以计算考虑电离现象的接地系统的瞬态脉冲响应。在这种数值方法中,使用时空可变土壤电阻率来模拟土壤电离现象,其中土壤电阻率是根据其与电场的局部瞬时值的关系进行控制的,并且没有关于电离区域的几何形状的先验假设电极周围是必要的。基于广泛接受的尺寸相似原理,本文对各种结构的接地电极的冲击电流扩散规律进行了仿真实验研究。通过将计算结果与实验结果和文献中的模拟结果进行比较,验证了所提出的数值方案。根据测量和仿真结果,讨论了接地电极的脉冲响应规律,并报告了电离对人体和设备安全的影响。

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