复杂高海拔地形下220kV输电线路工程设计与施工关键技术

##plugins.themes.bootstrap3.article.main##

涛 王
明 李

摘要

本文针对复杂高海拔地形下220kV输电线路工程面临的塔基定位难、导线弧垂控制精度低、高原机械效能衰减显著、强风覆冰耦合荷载不确定性高等核心挑战,开展系统实证研究。依托青藏高原东缘某典型山地工程段(海拔3100--4850米,相对高差达1620米,坡度角28--67),构建多源协同勘测---动态力学建模---高原适配施工---智能监测反馈的全链条技术体系。通过激光雷达点云与GNSS-RTK融合定位,将塔位放样误差压缩至±3.2 cm;采用考虑空气密度梯度与低温蠕变的修正弧垂算法,使冬季大负荷工况下导线对地距离偏差由±1.83 m降至±0.29 m;研发高原型液压紧线装置,作业效率提升41.7%,单基塔组立工期缩短2.8天;部署微气象-导线舞动-基础沉降三模态边缘感知节点,实现覆冰厚度识别误差≤±0.8 mm、风振频率捕捉响应延迟<80 ms。研究成果已支撑三条220kV线路安全投运,平均故障率较传统方法下降76.3%。

##plugins.themes.bootstrap3.article.details##

栏目

Articles

参考

[1] PAN H, ZHOU F R, MA Y, et al. Multiple Factors Coupling Probability Calculation Model of Transmission Line Ice-Shedding[J]. Energies, 2024, 17(5): 1208.

[2] HOU H, WANG Y, BAI X L, et al. Modelling icing growth on overhead transmission lines: Current advances and future directions[J]. Energy Conversion and Economics, 2024, 5(6): 343–357.

[3] 张建成, 蔺鹏伟, 张学虎, 等. 基于集团化联合施工模式的配电网工程建设管理体系创新与实践研究[J]. 水利电力技术与应用, 2026, 8(7): 79–81.

[4] JEONG S, JEON M, LEE J K, et al. Environmental infringement and sag estimation for power transmission lines with unmanned aerial vehicles and multi‐modal sensors[J]. Computer-Aided Civil and Infrastructure Engineering, 2025, 40(25): 4342–4363.

[5] HU G H, SUN C H, SHEN L Q, et al. Monocular vision transmission line sag measurement method based on local photography[J]. Optics and Precision Engineering, 2024, 32(8): 1175–1185.

[6] 杨福英, 张得科, 潘杰, 等. 高压输电线路施工安全技术措施探讨[J]. 水利电力技术与应用, 2026, 8(10): 25–27.

[7] CHEN Y F, DING X L. A survey of sag monitoring methods for power grid transmission lines[J]. IET Generation Transmission & Distribution, 2023, 17(7): 1419–1441.

[8] ZHANG Z J, ZHANG H, YUE S, et al. A Review of Icing and Anti-Icing Technology for Transmission Lines[J]. Energies, 2023, 16(2): 601.

[9] LI X, XIE Z B, ZENG L P, et al. Calculation Methods of High-Voltage Direct Current (HVDC) Line Sag Considering Meteorology[J]. Energies, 2024, 17(2): 305.

[10] LI Z L, HU Y J, TU X. Wind-Induced Response and Its Controlling of Long-Span Cross-Rope Suspension Transmission Line[J]. Applied Sciences, 2022, 12(3): 1488.

[11] SONG J, QIAN J G, LIU Z J, et al. Research on Arc Sag Measurement Methods for Transmission Lines Based on Deep Learning and Photogrammetry Technology[J]. Remote Sensing, 2023, 15(10): 2533.

[12] 胡孝, 等. 智能化技术在超高压输电线路带电作业装备中的应用与发展趋势[J]. 水利电力技术与应用, 2026, 8(8): 115–117.