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Research on Soil Resistivity Modeling Method of DC Grounding Electrode

机译:直流接地电极土壤电阻率建模方法研究

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The DC ground electrode is an important part of the DC transmission project. The distribution of the soil resistivity around it directly affects the parameter design and operation and maintenance of the ground electrode. In order to ensure the normal operation of the ground electrode and avoid affecting the personal safety and equipment performance near the ground electrode, it is necessary to test and model the soil resistivity around the ground electrode. In this paper, the quadrupol method and the magnetotelluric sounding method are used to test the soil resistivity around the ground electrode. The results obtained by these two test methods are compared, and the respective advantages and disadvantages of these two methods in soil resistivity testing are comprehensively analyzed. The soil resistivity is modeled by the inversion software independently developed by our team. Finally, the grounding resistance value calculated according to the soil model is in good agreement with the reference value, which verifies the reliability and accuracy of the method.
机译:直流接地电极是直流传输项目的重要组成部分。其周围的土壤电阻率的分布直接影响接地电极的参数设计和操作和维护。为了确保接地电极的正常操作,避免在接地电极附近影响个人安全和设备性能,有必要在接地电极周围测试和模拟土壤电阻率。在本文中,Quadrupol方法和磁音探测方法用于在接地电极周围测试土壤电阻率。通过这两种测试方法获得的结果进行了比较,综合分析了土壤电阻率测试中这两种方法的各个优点和缺点。土壤电阻率由我们团队独立开发的反转软件进行建模。最后,根据土壤模型计算的接地电阻值与参考值吻合良好,这验证了该方法的可靠性和准确性。

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