Assessment of the anti-wind performance of steady arm integrating a composite spring
编号:136 访问权限:仅限参会人 更新:2025-10-13 11:35:26 浏览:9次 口头报告

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摘要
Overhead contact line (OCL) is a critical power supply device in electrified railways. When deployed in strong winds regions, OCL is highly susceptible to galloping under wind loading. Excessive galloping can lead to structural damage of this system. In this study, a finite element model of OCL is developed based on the absolute nodal coordinate formulation, in which spring element is employed to represent the elastic compensation device of the steady arm. A shape-finding method and a dynamic simulation approach incorporating elastic steady arm are proposed. The aerodynamic load distribution of the OCL under high wind-speed conditions is obtained using computational fluid dynamics. The dynamic responses of elastic steady arm and traditional hook-type steady arm under strong wind loads are simulated. The results indicate that the elastic steady arm exhibits superior wind-resistant performance, achieving a maximum reduction of vertical vibration at the steady arm point by up to 30.89%.
关键词
Electrified railway,overhead contact line,aerodynamic parameter,wind vibration
报告人
Long Chen
Postdoctoral Fellow Southwest Jiaotong University

稿件作者
Long Chen Southwest Jiaotong University
Yang Song Southwest Jiaotong University
Fuchuan Duan Southwest Jiaotong University
Zeyao Hu Southwest Jiaotong University
Zhenzu Liu Southwest Jiaotong University
Zhigang Liu School of Electrical Engineering; Southwest Jiaotong University
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重要日期
  • 会议日期

    11月07日

    2025

    11月09日

    2025

  • 10月12日 2025

    初稿截稿日期

  • 10月30日 2025

    注册截止日期

主办单位
IEEE西南交通大学IAS学生分会
承办单位
西南交通大学电气工程学院
SPACI车网关系研究室
四川大学电力系统稳定与高压直流输电研究团队
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