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Electromagnetic transient modeling of grounding electrodes buried in frequency dependent soil with variable water content

机译:频率依赖性土壤接地电极的电磁瞬态建模与可变含水量

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The increasing demand for electricity over the past few decades has been continuously urging for more reliable power systems. Power transmission line networks, due to their vast physical dimensions, are the most critical components of a complex power system concerning the direct lightning strike. Grounding systems are widely used to mitigate the transient overvoltages for the protection of electrical component and human safety. The goal of this paper is to investigate the effect of frequency dependence of soil electrical parameters on the performance of vertical and horizontal grounding electrodes subjected to direct lightning strike, considering a variable water content of soil. Four soil models that take into account the variation of soil water content are reviewed and compared. The numerical simulations are performed using a full-wave electromagnetic model based on the Finite Element Method (FEM) in the frequency range from 1 kHz to 5 MHz and applying different soil models with varying water content. Then, electromagnetic transient (EMT) compatible equivalent circuits of grounding electrodes are developed using Fast Relaxed Vector Fitting (FRVF). Typical first and subsequent return stroke current waveforms measured at two different locations are adopted. The results of this paper demonstrate the importance of considering the variation of soil water content in the transient response of grounding electrodes. Simulation results demonstrate that the frequency dependence of the soil parameters lead to a decrease of the potential rise of the grounding electrodes compared to the case where the soil parameters are assumed constant. The effect of soil water content on the grounding performance is also shown to be dependent on the soil type, value of soil water content, and length of electrode.
机译:过去几十年的电力需求越来越多,不断推动更可靠的电力系统。由于其庞大的物理尺寸,电力传输线路网络是关于直接雷击的复杂电力系统的最关键组件。接地系统被广泛用于减轻保护电气部件和人类安全的瞬态过电压。本文的目的是探讨土壤电气参数频率依赖性对经受直喷式雷击的垂直和水平接地电极的性能的影响,考虑到土壤的可变含水量。考虑到土壤水分含量变异的四种土壤模型进行了综述,比较。使用基于1kHz至5MHz的有限元法(FEM)的全波电磁模型进行数值模拟,并使用不同的水含量施加不同的土壤模型。然后,使用快速松弛的载体配件(FRVF)开发接地电极的电磁瞬态(EMT)兼容的接地电路。采用在两个不同位置测量的典型的第一和后续返回行程电流波形。本文的结果证明了考虑接地电极瞬态响应中土壤含水量变化的重要性。模拟结果表明,与假设土壤参数恒定的情况相比,土壤参数的频率依赖性导致接地电极的电位上升的降低。土壤水分含量对接地性能的影响也显示为依赖于土壤类型,土壤含水量的价值和电极长度。

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