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Inductive interferences between a 500 kV power line and a pipeline with a complex approximation layout and multilayered soil

机译:500 kV电源线和具有复杂近似布局和多层土壤的管道之间的电感干扰

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This paper presents a steady-state electromagnetic interference study between a 500 kV overhead transmission line and a neighboring pipeline, based on data from a real project with a complex geometry and with emphasis on how the soil structure affects the inductive coupling mechanism, as well as the effectivity of grounding devices to reduce potentially hazardous pipeline induced voltages. Soil parameters are determined from actual field measurements, which results in a soil model composed of three layers. Conductor impedances are computed using a modification of the original Carson equation, in which the term describing the soil resistivity is replaced by an equivalent uniform of the multilayered structure, and then a circuit model is built using the Alternative Transients Program (ATP) to predict the resulting induced voltages. Results show an excellent agreement between the proposed approach and the reference values, with a comprehensible evaluation of the risks to which the interfered pipeline is exposed and how to mitigate them.
机译:本文介绍了500 kV架空传输线和相邻管道之间的稳态电磁干扰研究,基于具有复杂几何形状的实际项目的数据,并强调土壤结构如何影响电感耦合机构,以及接地装置减少潜在危险管道感应电压的有效性。土壤参数由实际场测量确定,导致由三层组成的土壤模型。使用原始Carson方程的修改来计算导体阻抗,其中描述土壤电阻率的术语由多层结构的等效均匀替换,然后使用替代瞬态程序(ATP)构建电路模型来预测产生的诱导电压。结果在提出的方法和参考价值之间显示出很好的一致性,具有可理解的评估干扰管道暴露的风险以及如何减轻它们。

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