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作 者:谭惠冰 吴从权 张鹃[1] TAN Huibing;WU Congquan;ZHANG Juan(Jiangmen Meteorological Service,Jiangmen,Guangdong,529000,China)
机构地区:[1]江门市气象局,广东江门529000
出 处:《广西科学院学报》2020年第2期213-217,共5页Journal of Guangxi Academy of Sciences
基 金:广东省江门市气象局科学技术研究项目“大地网参数性能测试研究”(201906)资助。
摘 要:本文通过对江门市220kV杜阮变电站大型地网接地阻抗进行测试,运用电流-电压表(变频/定频)三极法的直线法、30°夹角法、远离夹角法进行实践分析。结果表明:大地网接地阻抗值与测试电流、频率无关,与互感系数、电流极和土壤的接触面积以及电流线和电位线的夹角有关。在测试中,应尽量增大电流极与土壤的接触面积,增大电流线与电位线之间的距离,测试结果接近或小于设计值,相比之下,远距离测试法更符合要求。In this paper,the grounding impedance of the large-scale grounding grid of 220 kV Duruan substation in Jiangmen City is tested,and the straight line method,30°angle method,and far angle method of current-voltage meter(frequency conversion/fixed frequency)three-pole method are used for practical analysis.The results show that the grounding impedance value of the grounding grid is independent of the test current and frequency,and is related to the mutual inductance coefficient,the contact area between the current pole and the soil,and the angle between the current line and the potential line.In the test,the contact area between the current pole and the soil should be increased as much as possible,and the distance between the current wire and the potential wire should be increased.The test result is close to or less than the design value.In contrast,the long-distance test method is more in line with the requirements.
分 类 号:P427.32[天文地球—大气科学及气象学]
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