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Two case studies on structural analysis of transmission towers under downburst

机译:爆破下输电塔结构分析的两个案例研究

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Downbursts are of great harm to transmission lines and many towers can even be destroyed. The downburst wind field model by Chen and Letchford was applied, and the wind loads of two typical transmission towers in inland areas and littoral areas were calculated separately. Spatial finite element models of the transmission towers were established by elastic beam and link elements. The wind loads as well as the dead loads of conductors and insulators were simplified and applied on the suspension points by concentrated form. Structural analysis on two typical transmission towers under normal wind and downburst was completed. The bearing characteristics and the failure modes of the transmission towers under downburst were determined. The failure state of tower members can be judged by the calculated stress ratios. It shows that stress states of the tower members were mainly controlled by 45 degree wind load. For the inland areas with low deign wind velocity, though the structural height is not in the highest wind velocity zone of downburst, the wind load under downburst is much higher than that under normal wind. The main members above the transverse separator of the legs will be firstly destroyed. For the littoral areas with high deign wind velocity, the wind load under downburst is lower than under normal wind. Transmission towers are not controlled by the wind loads from downbursts in design process.
机译:突降对输电线路危害很大,许多塔楼甚至可能被毁。应用Chen和Letchford的下行突风场模型,分别计算了内陆地区和沿海地区的两个典型输电塔的风荷载。通过弹性梁和连杆单元建立了输电塔的空间有限元模型。简化了导体和绝缘子的风荷载以及静荷载,并通过集中形式将其施加到悬挂点上。完成了两个典型输电塔在正常风和暴风下的结构分析。确定了输电塔爆破后的承载特性和破坏方式。塔构件的失效状态可以通过计算出的应力比来判断。结果表明,塔构件的应力状态主要受45度风荷载控制。对于设计风速低的内陆地区,虽然结构高度不在下突的最高风速区,但下突的风荷载要比正常风大得多。腿部横向分离器上方的主要构件将首先被破坏。对于设计风速高的沿海地区,下突时的风荷载低于正常风。在设计过程中,输电塔不受暴发风荷载的控制。

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