用于架空电力线路与管道电磁干扰数值分析的三维电磁场模型

A. Racasan, C. Munteanu, V. Topa, I. Pop, E. Merdan
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引用次数: 6

摘要

本文概述了最近发展的一种数值计算算法,该算法用于分析架空高压线路对邻近管网产生的电磁干扰。该算法的主要优点是可以处理管线与管线之间不平行排列的应用,因此比传统的软件包更准确地计算出感应电位和电流值。为此,开发了一个原始的全三维电磁场模型。计算模块基于有限元(FEM) -边界元(BEM)耦合数值分析技术,本文第一部分对此进行了详细介绍。结合简单的算例,对所开发的数值算法的计算精度进行了验证,并将数值结果与基于传输线法(TLM)的已知软件包的计算结果进行了比较。在论文的第二部分概述了在正常和故障条件下工作的OHL的应用。概述了流经OHL的电流的大小和方向对沿受害管道的感应电位分布的重要性。最后的结论是本文的结尾。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D electromagnetic field model for numerical analysis of the electromagnetic interferences between overhead power lines and pipelines
The paper outlines a recently developed numerical computation algorithm set up for the analysis of the electromagnetic interferences generated by the overhead high voltage lines (OHL) on the neighbour pipeline networks. The main advantage of the algorithm proposed is that it can handle applications with unparallel arrangements between OHL and pipelines and therefore the induced potential and current values are more accurately computed than the traditional software packages. For this purpose, an original full 3D electromagnetic field model was developed. The computational module is based on a coupled Finite elements (FEM) — Boundary elements (BEM) numerical analysis technique that is detailed in the first part of the paper. The computation accuracy of the numerical algorithm developed was tested considering simple cases and comparing the numerical results with those obtained using a known software package based on the Transmission Lines Method (TLM). In the second part of the paper an application in the case of a OHL working on normal and fault conditions is outlined. The importance of the magnitude and direction of the currents flowing through the OHL on the induced potentials distribution along the victim pipeline is outlined. The final conclusions end the paper.
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