Performance of Bentonite and Kenaf Mixtures as Grounding Enhancement Materials

W. F. Wan Ahmad, M. H. Mohamad Roslan, J. Jasni, M. Ab-Kadir
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引用次数: 2

Abstract

The vital reason of having a grounding system in any power system installation is safety. There is a need to ensure that any fault current could be dispersed into soil at the shortest time possible during both normal and fault circumstances. There are many ways to be done in order to obtain the best grounding system with low earth resistance values. In one of the way is by adding NEM to the soil in the vicinity of a vertical ground conductor. This study employed four vertical ground conductors that were installed with NEM to investigate their performances, environmental and economic effects, and compared to a Reference grounding system with no NEM added in the vicinity of the ground conductor. The chosen NEM were Bentonite and Kenaf, as both materials are able to absorb and retain moisture in the surrounding soil. Four different mixtures of such NEMs were employed, i.e., 100% Bentonite, 100% Kenaf, Bentonite and Kenaf Mix A, and Bentonite and Kenaf Mix B. Note that these grounding systems were installed at a spacious site near to SGS, UPM where earth resistance of each grounding system was measured daily for 5 months, starting from 19$^{\mathrm{th}}$ December 2016 until 18th May 2017. It is found that after 150 days, the performance of the grounding systems in descending order were 100% Bentonite, Bentonite and Kenaf Mix A, and Bentonite and Kenaf Mix B, Reference, and 100% Kenaf grounding systems, with 20.74%, 41.66%, 43.59%, 93.27% and 103.50% measured earth resistance value compared to the day-0 earth resistance value of the Reference grounding system, respectively. This clearly demonstrated that 100% Bentonite is much better NEM to be used in grounding system installations compared to 100% Kenaf. However, Mix A grounding system also showed a promising performance once in a while, while Mix B did not. Therefore, it could be compelling to further explore the behaviour of mixing Bentonite and Kenaf as grounding enhancement materials with other various ratios for future works. Note that Bentonite ratio was more in Mix A compared to Mix B.
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膨润土和红麻混合物作为增强接地材料的性能
在任何电力系统安装中,接地系统的重要原因是安全。需要确保在正常和故障情况下,任何故障电流都能在尽可能短的时间内分散到土壤中。为了获得低接地电阻值的最佳接地系统,有许多方法可以采取。其中一种方法是在垂直接地导体附近的土壤中加入NEM。本研究采用了四根安装了NEM的垂直接地导线,研究其性能、环境和经济影响,并与接地导线附近未添加NEM的参考接地系统进行了比较。所选择的新材料是膨润土和红麻,因为这两种材料都能够吸收和保持周围土壤中的水分。使用了四种不同的nem混合物,即100%膨润土,100%红麻,膨润土和红麻混合物A,膨润土和红麻混合物b。注意,这些接地系统安装在SGS, UPM附近的一个空间场地,从2016年12月19日到2017年5月18日,每天测量每个接地系统的接地电阻,持续5个月。研究发现,150 d后,各接地系统的性能由高到低依次为100%膨润土、膨润土+红麻混合物A、膨润土+红麻混合物B、参考接地系统和100%红麻接地系统,其接地电阻值与参考接地系统第0天接地电阻值相比分别为20.74%、41.66%、43.59%、93.27%和103.50%。这清楚地表明,与100%红麻相比,100%膨润土是用于接地系统安装的更好的NEM。但是,Mix A接地系统也偶尔表现出良好的性能,而Mix B则没有。因此,进一步探索膨润土和红麻以其他不同比例混合作为接地增强材料的行为,在未来的工作中具有重要意义。注意,混合A中的膨润土比混合B中的高。
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