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  4. On the Influence of an Elevated Terrain on the Grounding Resistance of a Vertical Rod
 
conference paper

On the Influence of an Elevated Terrain on the Grounding Resistance of a Vertical Rod

Sunjerga, Antonio  
•
Rachidi, Farhad  
•
Rubinstein, Marcos
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January 1, 2019
2019 Ieee International Conference On Environment And Electrical Engineering And 2019 Ieee Industrial And Commercial Power Systems Europe (Eeeic / I&Cps Europe)
19th IEEE International Conference on Environment and Electrical Engineering (EEEIC) / 3rd IEEE Industrial and Commercial Power Systems Europe Conference (I and CPS Europe)

In this paper, we analyze the grounding resistance of a vertical grounding rod located in an elevated terrain. Tall structures such as wind turbines and mobile phone base stations are often installed in remote and hilly locations to gain more power or to facilitate line of sight to end users. Those locations are at an increased risk of being struck by lightning due to the greater elevation compared to their surroundings. These hilly areas are usually very rocky with low soil conductivity. A proper grounding system is therefore of paramount importance. In this study, we analyze the influence of the elevated terrain considering a simplified cone and a truncated cone geometries as a function of the apex angle and top radius. It is shown that the grounding resistance can be significantly increased both, in the case of small mounds of only a few meters height, and in the case of a high hill or a mountain.

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2019_final_vertical_sub.pdf

Type

Postprint

Version

http://purl.org/coar/version/c_ab4af688f83e57aa

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openaccess

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Copyright

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458.86 KB

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Adobe PDF

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050d1eaa56ff38782233897c6e081cbe

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