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High-precision Calculation of Geographical Current Density of DC Grounding Electrodes

机译:直流接地电极的地理电流密度的高精度计算

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The corrosion of underground buried metal facilities is affected by the geographical current density of DC grounding electrodes. If there is too much leakage current, it will impede the normal operation of the catholic protection device of the pipeline systems. In this paper, we theoretically analyze the geographical current density distribution of ground electrode in horizontal wide-area multi-layer earth, and derive the current density calculation formula. Then, a linear filtering method for high-frequency electromagnetic field calculation (KONG-201) is introduced, which is used to solve the geographical current density distribution of the grounding electrode. The simulation results show that the KONG-201 method is consistent with the high-order complex mirror method (HOCIM), faster speed calculation, and the higher precision. The method solves the problem of assessing the distribution of geographical current density of the DC grounding electrode, and it has a great application prospect.
机译:地下埋入式金属设施的腐蚀受直流接地电极的地理电流密度影响。如果泄漏电流太大,将会阻碍管道系统的天主教保护装置的正常运行。本文从理论上分析了水平广域多层地中接地电极的地理电流密度分布,推导了电流密度计算公式。然后,介绍了一种用于高频电磁场计算的线性滤波方法(KONG-201),该方法用于解决接地电极的地理电流密度分布。仿真结果表明,KONG-201方法与高阶复镜像方法(HOCIM)一致,计算速度更快,精度更高。该方法解决了评估直流接地电极的地理电流密度分布的问题,具有广阔的应用前景。

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