高海拔地区长横担输电塔-线体系覆冰风致动力响应
CSTR:
作者:
作者单位:

1.山东电力工程咨询院有限公司,济南 250013;2.山东大学 土建与水利学院,济南 250061

作者简介:

付建明(1982- ),男,高级工程师,主要从事输电线路设计研究,E-mail:fujm0312@163.com。
FU Jianming (1982- ), senior engineer, main research interest: transmission line design, E-mail: fujm0312@163.com.

通讯作者:

田利(通信作者),男,教授,博士生导师,E-mail:tianli@sdu.edu.cn。

中图分类号:

TM753;TU391

基金项目:

国家自然科学基金(52178489);山东省杰出青年科学基金(ZR2022JQ27)


Wind-driven dynamic response of ice-covered long cross-bar transmission tower-line system in high altitude areas
Author:
Affiliation:

1.Shandong Electric Power Engineering Consulting Institute Co. Ltd., Jinan 250013, P. R. China;2.School of Civil Engineering, Shandong University, Jinan 250061, P. R. China

Fund Project:

National Natural Science Foundation of China (No. 52178489); Shandong Provincial Natural Science Foundation for Distinguished Young Scholars (No. ZR2022JQ27)

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    摘要:

    输电线路易受大风、覆冰等多种灾害的影响而发生破坏,严重威胁能源安全。目前对于输电线路风灾、冰灾的研究多集中于低海拔地区,而众多西电东送输电线路跨越广袤的高原地区,其中长横担输电塔占有较大比重。为了保障高海拔地区输电线路安全运行,依托某±800 kV特高压直流输电工程,建立长横担输电塔-线体系精细化模型,基于高海拔地区覆冰条件,分别建立输电塔和输电线的覆冰工况;考虑高海拔地区空气密度、地形地貌等环境因素的影响,对比分析了高、低海拔地区的风荷载特征;基于高海拔地区覆冰工况和风荷载特点,开展长横担输电塔-线体系的风振响应分析。结果表明,高海拔地区风剖面较为平缓,长横担输电塔-线体系横担处位移响应大于塔顶,冰-风荷载作用下结构最大位移响应均出现在横担端部中点处。

    Abstract:

    Transmission lines are vulnerable to impairment by a variety of disasters including high winds and ice cover, which pose a significant threat to energy security. At present, studies on wind and ice disasters on transmission lines are mostly focused on low-altitude areas.However, many west-east transmission lines cross vast plateau areas, in which long cross-bar transmission towers account for a larger proportion. In order to ensure the safe operation of transmission lines in high-altitude areas, this paper establishes a long cross-bar transmission tower-line system refined model relying on a ±800 kV UHV DC transmission project, based on the ice-covering conditions in high-altitude areas, ice-covered working conditions of transmission towers and transmission lines are established respectively. Concurrently, the wind load characteristics of high-altitude and low-altitude areas are compared and analyzed, taking into account the influence of environmental factors such as air density, topography and geomorphology in high-altitude areas. Finally, based on the ice-covering conditions and wind load characteristics in high-altitude areas, wind-induced vibration response analysis of the long cross-bar transmission tower-line system is carried out. The findings indicate that the wind profile at elevated altitudes is comparatively gentle, the displacement response at the cross-bar of the long cross-bar transmission tower-line system is more pronounced than that at the tower's summit, and the maximum displacement response of the structure under ice-wind loads occurs at the midpoint of the cross-bar end.

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付建明,张丽娟,马一丹,齐永杰,刘士远,孟祥瑞,刘玉萍,田利.高海拔地区长横担输电塔-线体系覆冰风致动力响应[J].土木与环境工程学报(中英文),2026,48(2):226-235. FU Jianming, ZHANG Lijuan, MA Yidan, QI Yongjie, LIU Shiyuan, MENG Xiangrui, LIU Yuping, TIAN Li. Wind-driven dynamic response of ice-covered long cross-bar transmission tower-line system in high altitude areas[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2026,48(2):226-235.10.11835/j. issn.2096-6717.2023.142

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  • 收稿日期:2023-09-06
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  • 在线发布日期: 2026-03-31
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