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铁路电力线路迁改关键技术研究

庞现刚

科技创新与应用2026,Vol.16Issue(17):187-190,4.
科技创新与应用2026,Vol.16Issue(17):187-190,4.DOI:10.19981/j.CN23-1581/G3.2026.17.044

铁路电力线路迁改关键技术研究

庞现刚1

作者信息

  • 1. 安徽省综合交通研究院股份有限公司,合肥 230051
  • 折叠

摘要

Abstract

In the railway power line relocation project,the construction technology of high-voltage power line tower assembly plays a core supporting role.Through the deep integration of standardized tower design and modular construction mode,the safety level and construction efficiency of the project have been significantly improved.This technology addresses the industry challenge of cross railway live working by innovatively adopting non-contact installation technology,effectively avoiding the interference of traditional construction on railway operations,while ensuring the continuous and stable power supply of the power grid.In terms of ecological protection,by using prefabricated components and precise positioning technology,the on-site operation area and excavation volume have been significantly reduced,achieving low disturbance to the surrounding environment.This technological system fully embodies the refined concept of modern infrastructure construction.Its successful application not only provides key technical support for the strategy of building a strong transportation country,promotes the coordinated upgrading of railway networks and power systems,but also creates favorable conditions for the interconnection and intercommunication of urban agglomerations.By driving infrastructure iteration and upgrading through technology,this case demonstrates the comprehensive value of innovative construction methods in balancing engineering requirements,safety standards,and ecological protection,and sets a demonstration benchmark for power relocation projects in complex environments.

关键词

铁路/高压/电力线路迁改/杆塔组立施工/关键技术

Key words

railway/high voltage/power line relocation and reconstruction/tower assembly and construction/key technologies

分类

信息技术与安全科学

引用本文复制引用

庞现刚..铁路电力线路迁改关键技术研究[J].科技创新与应用,2026,16(17):187-190,4.

科技创新与应用

2095-2945

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