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Age-dependent fragility and life-cycle cost analysis of timber and steel distribution poles subjected to hurricanes.

机译:受飓风影响的木材和钢制配电杆的年龄相关脆弱性和生命周期成本分析。

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摘要

Power distribution systems are susceptible to extreme damage from natural hazards especially hurricanes. Hurricane winds can knock down distribution poles thereby causing damage to the system and power outages which can result in millions of dollars in lost revenue and restoration costs. Timber has been the dominant material used to support overhead lines in distribution systems. Recently however, utility companies have been searching for a cost-effective alternative to timber poles due to environmental concerns, durability, high cost of maintenance and need for improved aesthetics. Steel has emerged as a viable alternative to timber due to its advantages such as relatively lower maintenance cost, light weight, consistent performance, and invulnerability to wood-pecker attacks. Both timber and steel poles are prone to deterioration over time due to decay in the timber and corrosion of the steel. This research proposes a framework for conducting fragility analysis of timber and steel poles subjected to hurricane winds considering deterioration of the poles over time. Monte Carlo simulation was used to develop the fragility curves considering uncertainties in strength, geometry and wind loads. A framework for life-cycle cost analysis is also proposed to compare the steel and timber poles. The results show that steel poles can have superior reliability and lower life-cycle cost compared to timber poles, which makes them suitable substitutes.
机译:配电系统易受自然灾害(尤其是飓风)的极端破坏。飓风可击倒配电杆,从而导致系统损坏和停电,这可能导致数百万美元的收入损失和恢复成本。木材一直是支撑配电系统架空线的主要材料。然而,近来,由于对环境的关注,耐用性,高维护成本以及对改善美观的需求,公用事业公司一直在寻找一种经济有效的替代木杆的方法。钢铁由于其优点(例如相对较低的维护成本,重量轻,性能稳定以及不受啄木鸟攻击)而成为一种可行的木材替代品。由于木材的腐烂和钢的腐蚀,木材和钢杆都易于随时间而变质。这项研究提出了一个框架,用于进行考虑飓风随时间变化的飓风的木材和钢杆的脆性分析。考虑强度,几何形状和风荷载的不确定性,使用蒙特卡洛模拟法开发了脆性曲线。还提出了生命周期成本分析的框架,以比较钢杆和木杆。结果表明,与木杆相比,钢杆具有更高的可靠性和更低的生命周期成本,使其成为合适的替代品。

著录项

  • 作者

    Salman, Abdullahi M.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2014
  • 页码 72 p.
  • 总页数 72
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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