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Ensuring the Structural Safety of Overhead Transmission Lines by Design

机译:通过设计确保架空传输线的结构安全

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During service, transmission lines (TLs) will be subjected to unbalanced longitudinal loads due to events such as conductor breakage, insulator failure, and sudden ice shedding, which may damage TLs and subsequently hinder reliable power supply. Although unbalanced longitudinal loads are considered in current design codes, damage to TLs still occasionally occurs. This paper reviews the literature from the last 20 years pertaining to the response of TLs induced by the abovementioned events and associated tower failures. It comprises four main sections in relation to the sources of large unbalanced accidental loads: conductor breakage, sudden ice shedding, insulator breakage, and tower failure. Structural analysis methods to investigate these accidents are reviewed, and the latest research progress on modeling tower failure is discussed. Chinese code, American code and International Electrotechnical Commission code are compared to analyze the differences in accounting for longitudinal loads in these codes. In the end, several recommendations are provided for future design and research to ensure the structural safety of TLs. (C) 2021 American Society of Civil Engineers.
机译:期间的服务,传输线(TLS)将受到不平衡纵向载荷由于事件,如导线的断线,绝缘体失败,和突然脱落冰,这可能损坏TLS和随后碍可靠供电。尽管在当前设计代码中考虑了不平衡的纵向载荷,但仍然发生对TLS的损坏。本文评论了过去20年的文献,与上述事件和相关塔故障引起的TLS响应有关。它包括与大型不平衡意外载荷的来源有关的四个主要部分:导体破损,突然冰雪脱落,绝缘体破损和塔故障。审查了调查这些事故的结构分析方法,讨论了塔故障的最新研究进展。与“美国代码”和国际电工委员会委员会委员会进行了比较,以分析这些代码中纵向负荷的差异。最后,为未来的设计和研究提供了若干建议,以确保TLS的结构安全。 (c)2021年美国土木工程师协会。

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