南方电网技术2026,Vol.20Issue(3):1-7,7.DOI:10.13648/j.cnki.issn1674-0629.2026.03.001
带斜拉杆绝缘子的柔性直流换流阀抗震性能研究
Research on Seismic Performance of Flexible DC Converter Valve with Diagonal Rod Insulator
摘要
Abstract
In order to improve the seismic performance of the supported flexible DC converter valve,some equipment suppliers have added diagonal rod insulators between the support insulators.It is necessary to study the impact of the layout scheme and pre-tension force of the diagonal rod insulators on the overall seismic performance of the converter valve.Combined with a converter valve,finite element numerical simulation technology is used in a certain engineering project.Firstly,modal analysis is carried out to study the arrangement scheme of diagonal rod insulators and the influence of pre-tension force value on the dynamic characteristics of the valve tower.Then,the vibration mode decomposition response spectrum method and nonlinear time history analysis method are respectively used to conduct dynamic analysis of the valve tower.The results show that the addition of diagonal rod insulators can significantly increase the fundamental frequency of the converter valve tower,but the magnitude of the pre-tension force of the diagonal rod insulator has a relatively small impact on the overall frequency of the valve tower structure.The results obtained by the time history method are generally greater than those obtained by the response spectrum method.Because it can accurately simulate the nonlinear characteristic of the diagonal rod insulator which can be pulled but not compressed,it is recommended to use the time history method to study the seismic performance of pillar type electrical equipment with diagonal rod insulators.关键词
柔性直流换流阀/斜拉杆绝缘子/反应谱法/时程法/抗震性能Key words
flexible DC converter valve/diagonal rod insulator/response spectrum method/time history method/seismic performance分类
信息技术与安全科学引用本文复制引用
任成林,鲁翔,毕良富,杨斌,张立红,吕玮,郭磊,金胜波..带斜拉杆绝缘子的柔性直流换流阀抗震性能研究[J].南方电网技术,2026,20(3):1-7,7.基金项目
国家重点研发计划资助项目(2021YFB1507004). Supported by the National Key Research and Development Program of China(2021YFB1507004). (2021YFB1507004)