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A numerical model for the calculation of electromagnetic interference from power lines on nonparallel underground pipelines

机译:非平行地下管线电力线路电磁干扰计算的数值模型

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This work proposes a numerical methodology for the calculation of currents and voltages induced on underground pipelines by nearby overhead power lines. A previously developed quasi-3D methodology is extended, allowing the investigation of nonparallel routings of the pipelines with respect to the power lines. The proposed technique is based on a discretization of the pipeline path into several segments parallel to the power line. The section of the corridor corresponding to each pipeline segment is regarded as an electrical multi-port component, whose electrical parameters are extracted via finite element 2D analysis. Then, the obtained components are integrated into a network embodying the physical characteristics of the whole corridor. In this way, the circuital analysis is used to extend the capabilities of a standard two-dimensional field analysis. The proposed methodology is employed to simulate a pipeline running parallel to a power line for a distance of 12km. Afterwards, several nonparallel configurations - consisting of crossings between a pipeline and a power line - are assessed. The physical consequences of the crossing are discussed and a convergence study is performed to investigate the optimal pipeline subdivision procedure to be adopted for a set of different crossing angles.
机译:该工作提出了附近的桥接线在地下管道上诱导的电流和电压的数值方法。延长了先前开发的准3D方法,允许对管道相对于电力线的非平行路线进行调查。所提出的技术基于管道路径的离散化分为平行于电力线的若干段。对应于每个流水线段的走廊的部分被视为电多端口分量,其电参数通过有限元2D分析提取。然后,将所得组件集成到体现整个走廊的物理特征的网络中。以这种方式,电路分析用于扩展标准二维场分析的能力。所提出的方法用于模拟平行于电源线运行的管道,距离为12km。然后,评估几种非平行配置 - 由管道和电力线之间的交叉组成。讨论交叉的物理后果,并进行收敛研究以研究一组不同的交叉角采用的最佳管线细分过程。

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