在存在纵向和横向不对称的管道上确定高压OPL产生的感应电压

A. Cherepanov, A. Kryukov
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引用次数: 0

摘要

钢质管线的路线可以通过高压管线。由于OPL的电磁影响,OPL结构部件上可能产生危险电压,从而对管道维修人员造成健康风险。当电流在大地中流动时,在不对称模式下观察到最高电压。因此,在存在纵向和横向不对称的情况下,对感应电压水平进行定量评估的问题迫在眉睫。为了解决这一问题,采用了模拟电能系统非对称模式的方法;这些方法是在伊尔库茨克国立交通大学开发的,基于EES元素多相表示。仿真采用Fazonord软件实现。提出了一种测量高压线路在非对称模式下在并联表面管道上产生的感应电压的方法。该技术可用于制定旨在保护位于高压OPL电磁效应区域的管道操作人员的行动。该技术可以推广到管道和OPL暴露长度不平行的情况。本工作得到“应用基于相位坐标的数学建模方法和手段提高智能电网铁路供电系统电能质量和电磁安全”项目资助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determining the Induced Voltages, Generated By High-Voltage OPL, on a Pipeline in the Presence of Longitudinal and Transversal Unsymmetry
The routes of steel pipelines can pass along highvoltage OPL. Hazardous voltages can be induced on OPL structural parts due to OPL electromagnetic influence, thus creating health risks for the personnel servicing the pipeline. The highest voltages are observed in unsymmetrical modes when currents flow in the earth. Therefore, the problem of quantitative assessment of the induced voltages levels in the presence of longitudinal and transversal unsymmetry is urgent. To solve this problem, methods of simulating non-symmetrical modes of electrical energy systems (EES) were used; the methods were developed at the Irkutsk State Transport University and are based on the EES elements multiphase representation. The simulation was implemented using the Fazonord software application. The technique has been proposed, which allows to determine the induced voltage generated by high-voltage power lines on the parallel surface pipeline in unsymmetrical modes. The technique can be used to develop actions aimed at the protection of personnel operating pipelines in areas located in zones of electromagnetic effects of high-voltage OPL. The technique can be generalized in the event of non-parallel length of exposure of the pipeline and OPL. This work was financially supported by the grant “Improving the quality of electric energy and electromagnetic safety in railway power supply systems equipped with Smart Grid devices by applying methods and means of mathematical modeling based on phase coordinates”.
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