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Failure analysis of guyed transmission lines during F2 tornado event

机译:F2龙卷风事件中拉线传输线的故障分析

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摘要

Motivated by many failure incidents observed worldwide of transmission line structures during tornadoes and by the lack of appropriate design procedures accounting for loads associated with such events, an extensive research program focusing on this subject initiated at The University of Western Ontario, Canada, few years ago. The current study is a part of this research program, where a numerical model that can predict the capacity and the failure mode of a transmission line system under tornadoes is developed and validated. In this numerical model, the tornado wind field is obtained from previously conducted and validated computation fluid dynamics simulations. Two different lattice transmission towers are considered for failure analysis under the developed numerical model. Due to the localized nature of tornadoes, the forces acting on a structure depends on the location of the tornado relative to the structure. As such, a parametric study is first conducted by moving the tornado in space in order to identify the critical tornado locations leading to peak forces in the tower members. Failure analysis of each system is conducted under the two most critical tornado locations identified from the parametric studies. The analysis is conducted incrementally by gradually increasing the tornado velocity till reaching the peak F2 tornado velocity. The critical velocity at which a full collapse of a tower is determined. The effects of inclusion of geometric nonlinearities and of the assumptions made regarding post yielding behavior of tension members on the failure capacity are also assessed in the study. While both transmission tower systems are shown to fail at critical velocities less than the maximum F2 tornado velocity, significant difference in those critical velocities is observed between the two considered systems.
机译:由于龙卷风期间在全球范围内观察到的许多输电线路结构故障事件,并且由于缺乏适当的设计程序来考虑与此类事件相关的载荷,因此几年前,加拿大西安大略大学发起了针对该主题的广泛研究计划。当前的研究是该研究计划的一部分,其中开发并验证了可以预测龙卷风下输电线路系统容量和故障模式的数值模型。在此数值模型中,龙卷风风场是从先前进行并经过验证的计算流体动力学模拟中获得的。在开发的数值模型下,考虑使用两个不同的格构输电塔进行故障分析。由于龙卷风的局部性,作用在建筑物上的力取决于龙卷风相对于建筑物的位置。因此,首先通过在空间中移动龙卷风来进行参数研究,以识别导致塔架构件出现峰值力的关键龙卷风位置。每个系统的故障分析都是在参数研究确定的两个最关键的龙卷风位置下进行的。通过逐渐增加龙卷风速度直至达到峰值F2龙卷风速度来逐步进行分析。确定塔完全坍塌的临界速度。在研究中还评估了包括几何非线性和关于受拉构件的屈服后行为所做出的假设对破坏能力的影响。尽管两个输电塔系统均显示出在低于最大F2龙卷风速度的临界速度下发生故障,但在两个考虑的系统之间却观察到了这些临界速度的显着差异。

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