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Research on cylinder Flexible Graphite Earth Electrode (FGEE) used to reduce tower earth resistance

机译:用于减少塔式土抗性的气缸柔性石墨接地电极(FGEE)的研究

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The excellent performance of earth electrodes is the key to stable and safe operation of transmission lines. However, corroded earth electrodes in practical cases can increase the tower earth resistance. In this paper new Flexible Graphite Earth Electrodes (FGEE) are introduced to address the corrosion problem and its new wrapping method is proposed to reduce the tower earth resistance. The proposed earth resistance reduction method is effective by theoretical analyses. Lots of simulation work is conducted to analyze the effect of factors on both single-pile and multi-pile tower earth resistance. Comparisons are conducted on five commonly used types of tower earth-electrode network, including sole tower foundation, tower foundation with ring earth conductor or FGEE, tower foundation with both ring earth conductor and FGEE, and tower foundation with ring earth conductor and horizontal radial electrode of 20 m on four directions.. Besides, grounding tests on scaled foundation earth electrodes are carried out to verify the validity of the proposed method. Simulation results show that the tower earth resistance is reduced by 15 similar to 60% in 500 similar to 3000 Omega.m soil. For single-pile tower foundation, the lower the wrapping position, the smaller the earth resistance, and the earth resistance is negatively related to the wrapping radius, while down lead wire connection types have little influence on earth resistance; besides, all the three factors above have impacts on current density. For multi-pile tower foundation, earth resistance is negatively related to the distance between two piles and separate wrapping is a preferred type of wrapping. Moreover, among the proposed five commonly used grounding types, Type V is preferred. Finally, scaled laboratory test results indicate that the cylinder FGEE can effectively reduce the tower earth resistance.
机译:地球电极的优异性能是传输线路稳定和安全操作的关键。然而,实际情况下的腐蚀地电极可以增加塔架的抗性。在本文中,引入了新的柔性石墨接地电极(FGEE)以解决腐蚀问题,提出其新的包装方法以降低塔式抗塔。所提出的接地抗性降低方法是通过理论分析有效的。进行了许多仿真工作,以分析对单桩和多桩塔土抗性的因素的影响。在五种常用类型的塔式地球电极网络上进行比较,包括唯一塔基础,塔楼基础,带环形导线或FGEE,塔楼基础,带有环形导体和FGEE,以及带环形导体和水平径向电极的塔楼基础在四个方向上的20米。此外,对缩放基础接地电极进行接地测试以验证所提出的方法的有效性。仿真结果表明,塔接地抵抗减少了15%,与300种相似的60%相似,与3000欧欧姆土壤相似。对于单桩塔基地基,包装位置越低,接地电阻越小,接地电阻与包装半径呈负相关,而下铅线连接类型对土抵抗几乎没有影响;此外,上面的所有三种因素都对电流密度产生影响。对于多桩塔基础,接地电阻与两个桩之间的距离负相关,并且单独包装是一种优选的包装类型。此外,在提出的五种常用的接地类型中,v型是优选的。最后,缩放的实验室测试结果表明气缸FGEE可以有效地降低塔式抗塔。

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