Seismic Performances and Vulnerability Analysis of a 500kV Loop in DC Field

Yunlong Chen, Xing Chen, Q. Xie
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Abstract

The loop in DC field, an essential part of a converter substation, consists of several post insulators and other pillar-type equipment interconnected by rigid bus and flexible conductor. However, it has been found over the past few decades that the great slenderness of pillar-type equipment renders them extremely susceptible to damage during earthquakes. This paper is aimed to comprehensively analyze seismic performances and vulnerability of the loop in DC field and propose improvement recommendations. A 500kV loop in a DC field of a converter substation is taken as the objective to establish a refined finite element model. To obtain the seismic responses, each equipment item of the loop was excited under 30 groups of three-component earthquake records with different PGAs, as well as the loop. The result of simulating process shows that the dynamic responses are relevant to the installation positions. In general, the stress of equipment installed at the end of the loop tends to be higher than that of a single unit, while the equipment installed at the corner of the loop tends to decrease compared to a single unit. Then seismic vulnerability analysis was conducted using the multiple stripes analysis (MSA) method to get the vulnerability curves of the loop and key equipment. The results of seismic vulnerability analysis can be used to predict the failure probability of this 500kV loop under different intensities of earthquakes, and to rank the seismic risk of equipment. Additionally, the seismic vulnerability of the loop is always higher than the vulnerability of any equipment in it.
500kV直流场回路抗震性能及易损性分析
直流回路是换流站的重要组成部分,它由若干个立柱绝缘子和其他柱式设备组成,通过刚性母线和柔性导体相互连接。然而,在过去的几十年里,人们发现柱式设备的细长使得它们在地震中非常容易受到损坏。本文旨在综合分析直流场下回路的抗震性能和易损性,并提出改进建议。以某换流站直流场500kV回路为目标,建立了精细化有限元模型。在30组不同PGAs的三分量地震记录下,对环上各设备进行激励,得到环上各设备的地震反应。仿真结果表明,系统的动态响应与安装位置有关。一般情况下,安装在回路末端的设备的应力比单个机组的应力大,而安装在回路角落的设备的应力比单个机组的应力小。然后利用多条纹分析(MSA)方法进行地震易损性分析,得到了回环和关键设备的易损性曲线。地震易损性分析结果可用于预测该500kV回路在不同烈度地震作用下的失效概率,并对设备的地震危险性进行排序。此外,环的地震易损性总是高于环内任何设备的易损性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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