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Evaluation of the effect of salt water and a counterpoise on the voltage profile of a HV power transmission line grounding system in a two layer with high resistivity soil

机译:高电阻率土壤中盐水和对抗盐水效应对HV电力传输线接地系统电压曲线的评价

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Soil resistivity plays a key role in designing grounding systems of high voltage transmission lines and substations. This paper deals with an already in service HV utility, it is a 69 kV transmission line with a power generation plant at one end and a transformation substation at the other. What makes this case very interesting is that this installation is located in a high soil resistivity area, at the same time as being in the vicinity of sea water with very low resistivity. It belongs to Hydro-Quebec and does not have a shield wire nor counterpoise. This research highlights the impact of the salt water in reducing the potential rise during an electrical fault and the effectiveness of the counterpoise when the resistivity of the soil is very high. The method of images from electromagnetics is applied to calculate the potential rise. All results are validated by experimental measurements performed by a specialized field test group from Hydro-Quebec.
机译:土壤电阻率在设计高压输电线路和变电站的接地系统中起着关键作用。 本文涉及已经在服务的HV实用程序中,它是一个69 kV输送线,在一端,另一端发电厂和变速器。 这种情况非常有趣的是,这种安装位于高土壤电阻率区域,同时在海水附近,电阻率非常低。 它属于Hydro-quebec,没有屏蔽线也不是对抗。 该研究突出了盐水对减少电气故障的潜在上升的影响,以及当土壤的电阻率非常高时对抗的有效性。 应用来自电磁学的图像的方法来计算潜在的上升。 所有结果均通过由Hydro-Quebec专业的场测试组进行的实验测量验证。

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