Investigations on the Performance of Grounding Device with Spike Rods (GDSR) with the Effects of Soil Resistivity and Configurations

In a recently published work, the characteristics of a new grounding device with spike rods (GDSR) with various arrangements of ground electrodes under high magnitude impulse currents (up to 16 kA), was investigated. In an earlier study, the ground electrodes were installed in low resistivity test m...

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Main Authors: Abdul Wali Abdul Ali, Nurul Nadia Ahmad, Normiza Mohamad Nor, Nur Farahi Idris, Farhan Hanaffi
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/13/14/3538
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spelling doaj-2e2bb6f8b021422c8046de6798962f1b2020-11-25T03:24:24ZengMDPI AGEnergies1996-10732020-07-01133538353810.3390/en13143538Investigations on the Performance of Grounding Device with Spike Rods (GDSR) with the Effects of Soil Resistivity and ConfigurationsAbdul Wali Abdul Ali0Nurul Nadia Ahmad1Normiza Mohamad Nor2Nur Farahi Idris3Farhan Hanaffi4Faculty of Engineering, Multimedia University, Jalan Multimedia, Cyberjaya 63100, MalaysiaFaculty of Engineering, Multimedia University, Jalan Multimedia, Cyberjaya 63100, MalaysiaFaculty of Engineering, Multimedia University, Jalan Multimedia, Cyberjaya 63100, MalaysiaFaculty of Engineering, Multimedia University, Jalan Multimedia, Cyberjaya 63100, MalaysiaFaculty of Electrical Engineering, Universiti Teknikal Malaysia Melaka (UTeM), Melaka 76100, MalaysiaIn a recently published work, the characteristics of a new grounding device with spike rods (GDSR) with various arrangements of ground electrodes under high magnitude impulse currents (up to 16 kA), was investigated. In an earlier study, the ground electrodes were installed in low resistivity test media, with resistance at steady state (Rdc) values ranging from 11 Ω to 75 Ω. In practice, various soil resistivity, ranging from a few Ohm-metres to several kiloOhm-metres, have been reported in the standards. It is, therefore, necessary to investigate the characteristics of GDSR with different arrangements of ground electrodes in various soil resistivities under high impulse currents. In this present paper, six configurations of ground electrodes are used, installed at three different sites and subjected to high impulse conditions. Impulse test data of all the grounding systems are analyzed. The Finite Element Method (FEM) is used to compute the electric field values of the ground electrodes achieved. It is found that the highest electric field occurs in the presence of electrodes with the highest Rdc, soil resistivity and current magnitudes. This new data would be useful in bolstering the performance of GDSR in various types of soil resistivities, electrode arrangements and current magnitudes, which may allow for optimum design of grounding systems.https://www.mdpi.com/1996-1073/13/14/3538earthing systemselectrode geometryfast-impulseshigh-magnitude currents
collection DOAJ
language English
format Article
sources DOAJ
author Abdul Wali Abdul Ali
Nurul Nadia Ahmad
Normiza Mohamad Nor
Nur Farahi Idris
Farhan Hanaffi
spellingShingle Abdul Wali Abdul Ali
Nurul Nadia Ahmad
Normiza Mohamad Nor
Nur Farahi Idris
Farhan Hanaffi
Investigations on the Performance of Grounding Device with Spike Rods (GDSR) with the Effects of Soil Resistivity and Configurations
Energies
earthing systems
electrode geometry
fast-impulses
high-magnitude currents
author_facet Abdul Wali Abdul Ali
Nurul Nadia Ahmad
Normiza Mohamad Nor
Nur Farahi Idris
Farhan Hanaffi
author_sort Abdul Wali Abdul Ali
title Investigations on the Performance of Grounding Device with Spike Rods (GDSR) with the Effects of Soil Resistivity and Configurations
title_short Investigations on the Performance of Grounding Device with Spike Rods (GDSR) with the Effects of Soil Resistivity and Configurations
title_full Investigations on the Performance of Grounding Device with Spike Rods (GDSR) with the Effects of Soil Resistivity and Configurations
title_fullStr Investigations on the Performance of Grounding Device with Spike Rods (GDSR) with the Effects of Soil Resistivity and Configurations
title_full_unstemmed Investigations on the Performance of Grounding Device with Spike Rods (GDSR) with the Effects of Soil Resistivity and Configurations
title_sort investigations on the performance of grounding device with spike rods (gdsr) with the effects of soil resistivity and configurations
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2020-07-01
description In a recently published work, the characteristics of a new grounding device with spike rods (GDSR) with various arrangements of ground electrodes under high magnitude impulse currents (up to 16 kA), was investigated. In an earlier study, the ground electrodes were installed in low resistivity test media, with resistance at steady state (Rdc) values ranging from 11 Ω to 75 Ω. In practice, various soil resistivity, ranging from a few Ohm-metres to several kiloOhm-metres, have been reported in the standards. It is, therefore, necessary to investigate the characteristics of GDSR with different arrangements of ground electrodes in various soil resistivities under high impulse currents. In this present paper, six configurations of ground electrodes are used, installed at three different sites and subjected to high impulse conditions. Impulse test data of all the grounding systems are analyzed. The Finite Element Method (FEM) is used to compute the electric field values of the ground electrodes achieved. It is found that the highest electric field occurs in the presence of electrodes with the highest Rdc, soil resistivity and current magnitudes. This new data would be useful in bolstering the performance of GDSR in various types of soil resistivities, electrode arrangements and current magnitudes, which may allow for optimum design of grounding systems.
topic earthing systems
electrode geometry
fast-impulses
high-magnitude currents
url https://www.mdpi.com/1996-1073/13/14/3538
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