Performance of Bentonite and Vermiculite Mixtures as Grounding Enhancement Materials

W. F. Wan Ahmad, J. Jasni, P. Krishnan, M. Ab-Kadir
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Abstract

Grounding means connecting an electrical circuit or device to the ground. During lightning, high voltage could be developed in the electrical distribution system wires. Therefore, grounding system provides a safe return path around the electrical system and minimizes damage from such occurrences. A good grounding system has very low resistance value. Low earth resistance will ensure that any high fault current will be directed into ground due to low resistive path presented. Earth resistance varies with certain soil specifications, i.e. moisture, salt content, temperature, types and compactness. Note that in this study, soil is treated using natural enhancement material in order to improvise its moisture retaining capability. Four grounding systems with copper conductors were installed with NEM mixtures for their performances to be contrasted with a Reference grounding system with no NEM added to the vicinity of the ground conductor. The selected NEMs were Bentonite and Vermiculite with different ratios, i.e. 100% Bentonite, 100% Vermiculite, Bentonite and Vermiculite Mix A, and Bentonite and Vermiculite Mix B. Note that all five grounding systems were installed near to SGS, UPM with their daily earth resistance measurements were done for more than 100 days, i.e. from 1st Feb 2019 until 22nd May 2019. By applying 0° separation angle and 62% method, the average earth resistance value was obtained, and the best performed grounding system installation in descending order were identified to be Bentonite and Vermiculite Mix A, 100% Bentonite, Bentonite and Vermiculite Mix B, and 100% Vermiculite with their measured earth resistance values were demonstrated to be 28.06%, 32.54%, 58.89%, and 103.95%, respectively compared to the earth resistance value of the Reference grounding system on day-0. Thus, 100% Vermiculite may not be suitable to be used as NEM in grounding system but Bentonite and Vermiculite Mix A could be said to be better and comparable to Bentonite which could be proposed as a new grounding enhancement mixture. Note that Bentonite ratio was more in Mix A compared to Mix B.
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膨润土和蛭石混合物作为增强接地材料的性能
接地是指将电路或设备连接到地面上。雷电发生时,配电系统中的电线会产生高压。因此,接地系统在电气系统周围提供了一个安全的返回路径,并将此类事故造成的损害降到最低。一个好的接地系统的电阻值很低。低接地电阻将确保任何高故障电流将直接进入地由于低电阻路径。土壤电阻随土壤规格的不同而变化,如湿度、含盐量、温度、类型和密实度。请注意,在本研究中,土壤使用天然增强材料进行处理,以提高其保持水分的能力。在四个铜导体接地系统中安装了NEM混合物,以便与在接地导体附近没有添加NEM的参考接地系统进行对比。所选的nem是不同比例的膨润土和蛭石,即100%膨润土、100%蛭石、膨润土和蛭石混合物A,以及膨润土和蛭石混合物b。注意,所有五个接地系统都安装在SGS和芬川附近,每天的接地电阻测量都进行了100多天,即从2019年2月1日到2019年5月22日。采用0°分离角和62%法,得到平均地电阻值,从大到小依次为膨润土-蛭石混合物A、100%膨润土、膨润土-蛭石混合物B, 100%蛭石的接地电阻值与参考接地系统第0天的接地电阻值相比,分别为28.06%、32.54%、58.89%和103.95%。因此,100%蛭石可能不适合作为NEM用于接地系统,但膨润土和蛭石混合A可以说是更好的,可以与膨润土相媲美,可以作为一种新的接地增强混合物。注意,混合A中的膨润土比混合B中的高。
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