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Reduction of the visual impact of overhead transmission line systems through utilisation of line surge arresters as lightning protection

机译:通过使用线路避雷器作为防雷保护,减少架空输电线路系统的视觉影响

摘要

The main reason for the increasing public resistance to overhead transmission line systems in Denmark is the impact on the environment with emphasis on the visual aspect. Therefore the Danish Transmission System Operator Energinet.dk is currently carrying out a research project, in cooperation with the Technical University of Denmark, on how to lessen the visual impact of 400 kV overhead line transmission systems. In this paper omission of shield wires combined with installation of a suitable number of line surge arresters is investigated as a possible alternative to transmission lines equipped with shielding wires thereby reducing tower height, allowing more compact designs of towers thus minimizing the visual environment impact of the lines. Omission of shield wires in the system and instead utilizing a larger number of surge arresters in the (upper) phases of an overhead line without reduction in line performance and lightning protection of the nearest substations requires thorough modelling of the new line including all electrical parameters necessary for performance evaluation under all conditions. In this paper, explicit use of line surge arresters as lightning protection on the line will be investigated by transient simulations on a 400 kV line with either shield wires or line surge arresters. These simulations will also be used to estimate number and location of the line surge arresters in the line to ensure a satisfactory performance of the line when omitting shield wires in the tower top. The simulation model will consist of a line section modelled in PSCAD/EMTDC as a distributed frequency dependent parameter line. Based on results from numerical simulations it is shown that line surge arresters can be used instead of shield wires however this has consequences with respect to the performance of the line and the required protection level in substations. The use of line surge arresters gives the possibility to decrease the height of towers thereby improving the visual impression of the overhead line transmission systems. However the usage of line surge arresters will, dependent upon line surge arrester placement, result in a denser visual impression of the tower top. The results will be discussed in particular with respect to possible future tower top geometries.
机译:丹麦公众对架空输电线路系统的抵抗力增强的主要原因是对环境的影响,尤其是视觉方面。因此,丹麦输电系统运营商Energinet.dk目前正在与丹麦技术大学合作进行一项有关如何减轻400 kV架空线输电系统视觉影响的研究项目。在本文中,对省略屏蔽线并安装适当数量的线路电涌放电器进行了研究,以作为配备屏蔽线的传输线的一种可能替代方案,从而减小塔架高度,允许塔架更紧凑的设计,从而最大程度地减小对塔架的视觉环境影响。线。省略系统中的屏蔽线,而在架空线的(上)相中使用大量电涌放电器,而又不降低线路性能,并且对最近的变电站进行雷电保护,需要对新线路进行全面建模,包括所有必要的电气参数在所有条件下进行性能评估。在本文中,将通过在具有屏蔽线或线路电涌放电器的400 kV线路上进行暂态仿真,研究明确使用线路电涌放电器作为线路上的防雷措施。这些模拟还将用于估计线路中的线路电涌放电器的数量和位置,以确保在省略塔顶中的屏蔽线时,线路具有令人满意的性能。仿真模型将由在PSCAD / EMTDC中建模的线段组成,作为与频率相关的分布式参数线。根据数值模拟的结果表明,可以使用电涌放电器代替屏蔽线,但是这会对线路性能和变电站所需的保护等级产生影响。使用线路电涌放电器可以降低塔架的高度,从而改善架空线路传输系统的视觉效果。但是,根据电涌放电器的位置,使用电涌放电器会导致塔顶的视觉印象更浓。将特别针对可能的未来塔顶几何形状讨论结果。

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