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Capacity assessment of existing corroded overhead power line structures subjected to synoptic winds

机译:受风影响的现有腐蚀架空电力线结构的容量评估

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The physical infrastructure of the power systems, including the high-voltage transmission towers and lines as well as the poles and wires for power distribution at a lower voltage level, is critical for the resilience of the community since the failures or nonfunctioning of these structures could introduce large area power outages under the extreme weather events. In the current engineering practices, single circuit lattice steel towers linked by transmission lines are widely used to form power transmission systems. After years of service and continues interactions with natural and built environment, progressive damages accumulate at various structural details and could gradually change the structural performance. This study is to evaluate the typical existing transmission tower-line system subjected to synoptic winds (atmospheric boundary layer winds). Effects from the possible corrosion penetration on the structural members of the transmission towers and the aerodynamic damping force on the conductors are evaluated. However, corrosion in connections is not included.Meanwhile, corrosion on the structural members is assumed to be evenly distributed. Wind loads are calculated based on the codes used for synoptic winds and the wind tunnel experiments were carried out to obtain the drag coefficients for different panels of the transmission towers as well as for the transmission lines. Sensitivity analysis is carried out based upon the incremental dynamic analysis (IDA) to evaluate the structural capacity of the transmission tower-line system for different corrosion and loading conditions. Meanwhile, extreme value analysis is also performed to further estimate the short-term extreme response of the transmission tower-line system.
机译:电力系统的物理基础设施,包括高压输电塔和输电线以及用于在较低电压水平下进行配电的电线杆和电线,对于社区的弹性至关重要,因为这些结构的故障或失灵可能在极端天气事件下引入大面积停电。在当前的工程实践中,通过传输线连接的单回路晶格钢塔被广泛用于形成电力传输系统。经过多年的服务并继续与自然和建筑环境互动,渐进式损坏在各种结构细节处累积,并可能逐渐改变结构性能。这项研究旨在评估遭受天气天气(大气边界层风)的典型现有输电塔线系统。评估了腐蚀对输电塔结构构件的渗透以及导线上的气动阻尼力的影响。但是,不包括连接处的腐蚀。同时,假定结构构件上的腐蚀是均匀分布的。根据用于天气风的代码计算风荷载,并进行了风洞实验,以获取输电塔不同面板以及输电线路的阻力系数。基于增量动态分析(IDA)进行了敏感性分析,以评估输电塔线系统在不同腐蚀和负载条件下的结构能力。同时,还进行了极值分析,以进一步估计输电塔线系统的短期极端响应。

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