Performance of Bentonite and Peat Moss Mixtures as Grounding Enhancement Materials

W. F. Wan Ahmad, A. H. Abdul Rahman, J. Jasni, M. Ab-Kadir
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Abstract

Grounding system is one of the lightning protection system that meant to provide protection for a power system, equipment in it and any personnel whom might accidently in touch with it, during both normal and fault conditions. It must with a low impedance path, ensuring all fault currents to be dispersed into earth at the shortest time possible. This could be achieved by treating grounding enhancement materials with the surrounding soil to reduce its earth resistance effectively. Grounding enhancement materials could be natural or chemical based, i.e. CEM and NEM, respectively. Only NEMs were considered in this study where four grounding systems were installed near to SGS, UPM with 100% Bentonite, 100% Peat Moss, Bentonite and Peat Moss Mix A, and Bentonite and Peat Moss Mix B. These NEM were mixed with water for their performances were compared to a Reference grounding system which is without any NEM added to the vicinity of the ground conductor. The performances of all installed grounding systems were evaluated by the percentage reductions of their measured earth resistance values against the Reference grounding system, with Fall-of-potential method, 62% rule and 0o separation angle were employed. The earth resistances were measured daily for 120 days, i.e. from 1st Feb 2019 to 1st Jun 2019 and it has been found that the best performed grounding system in descending order were 100% Bentonite, Bentonite and Peat Moss Mix A, 100% Peat Moss, Bentonite and Peat Moss Mix B, and Reference grounding systems. Note that Bentonite ratio was more in Mix A compared to Mix B.
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膨润土和泥炭苔藓混合物作为增强接地材料的性能
接地系统是一种防雷系统,在正常和故障情况下对电力系统、电力系统中的设备以及可能意外接触到电力系统的人员提供保护。它必须具有低阻抗路径,以确保所有故障电流在尽可能短的时间内分散到地球上。这可以通过将接地增强材料与周围土壤一起处理来有效降低其接地阻力。接地增强材料可以是天然的或化学的,即CEM和NEM。本研究只考虑了NEM,在SGS附近安装了四个接地系统,UPM使用100%膨润土,100%泥煤苔藓,膨润土和泥煤苔藓混合物A,膨润土和泥煤苔藓混合物b。这些NEM与水混合以获得其性能与参考接地系统进行比较,参考接地系统在接地导体附近没有添加任何NEM。所有已安装的接地系统的性能通过测量接地电阻值相对于参考接地系统的百分比降低来评估,采用降电位法、62%规则和00分离角。从2019年2月1日至2019年6月1日,每天对120天的接地电阻进行测量,结果发现,从大到小,最佳接地系统为100%膨润土、膨润土和泥炭苔藓混合物A、100%泥炭苔藓、膨润土和泥炭苔藓混合物B和参考接地系统。注意,混合A中的膨润土比混合B中的高。
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