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Failure analysis of a transmission tower during a microburst

机译:微爆期间输电塔的失效分析

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This paper focuses on assessing the failure of one of the transmission towers that collapsed in Winnipeg, Canada, as a result of a microburst event. The study is conducted using a fluid-structure numerical model that was developed in-house. A major challenge in microburst-related problems is that the forces acting on a structure vary with the microburst parameters including the descending jet velocity, the diameter of the event and the relative location between the structure and the jet. The numerical model, which combines wind field data for microbursts together with a non-linear finite element formulation, is capable of predicting the progressive failure of a tower that initiates after one of its member reaches its capacity. The model is employed first to determine the microburst parameters that are likely to initiate failure of a number of critical members of the tower. Progressive failure analysis of the tower is then conducted by applying the loads associated with those critical configurations. The analysis predicts a collapse of the conductors cross-arm under a microburst reference velocity that is almost equal to the corresponding value for normal wind load that was used in the design of the structure. A similarity between the predicted modes of failure and the post event field observations was shown.
机译:本文着重评估由于微暴事件而在加拿大温尼伯倒塌的输电塔之一的故障。该研究使用内部开发的流体结构数值模型进行。在与微爆有关的问题中的主要挑战是作用在结构上的力随微爆参数的变化而变化,这些参数包括射流速度的下降,事件的直径以及结构与射流之间的相对位置。该数值模型将微爆裂的风场数据与非线性有限元公式结合在一起,能够预测塔架中某个构件达到其承载能力时所引发的渐进式破坏。首先使用该模型来确定可能导致塔楼多个关键构件失效的微爆参数。然后,通过施加与那些关键配置相关的载荷进行塔的渐进式故障分析。该分析预测,在微爆破参考速度下,导体横臂会崩溃,该速度几乎等于结构设计中使用的正常风荷载的相应值。显示了预测的故障模式与事件后现场观察之间的相似性。

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