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首页> 外文期刊>Journal of Electrical and Electronic Engineering >Analysis of Current Density in Soil for Resistivity Measurements and Electrical Grounding Designs
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Analysis of Current Density in Soil for Resistivity Measurements and Electrical Grounding Designs

机译:用于电阻率测量和电气接地设计的土壤电流密度分析

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摘要

The design of electrical grounding systems is crucial to ensure people's safety and equipment integrity. The performance of the grounding system is critically dependent on the characteristics of the local soil surrounding the grounding system. Some wrong concepts and assumptions on soil electrical properties are still prevalent among professionals regarding soil resistivity measurements and grounding designs. The objective of this paper is to examine the current density in the earth surrounding measurement electrodes and electrical grounding systems and discuss the effects of soil structures on measurements and grounding related studies. The analyses described here are based on electromagnetic field theory. First, this paper examines soil resistivity measurements using the Wenner method in three typical, but different soil structure models, by exploring the distribution of earth current density in the soil surrounding the current injection electrodes. The computed results are illustrated using appropriate plots to understand better the influence of soil structure and characteristics on the current penetration across the soil layers. Furthermore, a detailed study on the influence of nearby buried grounding systems on soil resistivity measurements was also carried out. Finally, the performance of grounding systems in the three soil structure models has been studied in order to gain an intuitive understanding of the effects of soil structures on grounding. The results clarify and invalidate some misleading arguments used by a few practicians. All computed results are summarized in appropriate tables and figures which should provide helpful visual clues and useful information when planning soil resistivity measurements and designing electrical grounding systems.
机译:电气接地系统的设计对于确保人员安全和设备完整性至关重要。接地系统的性能关键取决于接地系统周围局部土壤的特性。在土壤电阻率测量和接地设计方面,专业人员对土壤电特性的某些错误概念和假设仍然很普遍。本文的目的是检查测量电极和电气接地系统周围大地的电流密度,并讨论土壤结构对测量和接地相关研究的影响。此处描述的分析基于电磁场理论。首先,本文通过研究在电流注入电极周围的土壤中电流密度的分布情况,使用Wenner方法在三种典型但不同的土壤结构模型中检查土壤电阻率。使用适当的曲线图说明了计算结果,以更好地了解土壤结构和特性对当前穿越土壤层的影响。此外,还对附近的地下接地系统对土壤电阻率测量的影响进行了详细研究。最后,研究了三种土壤结构模型中接地系统的性能,以直观了解土壤结构对接地的影响。结果澄清和使一些实践者使用的一些误导性论点无效。在适当的表和图中汇总了所有计算结果,在计划土壤电阻率测量和设计电气接地系统时应提供有用的视觉线索和有用的信息。

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