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Experimental and computational simulation for wind effects on the Zhoushan transmission towers

机译:舟山输电塔风效应的实验与计算模拟

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Long-span transmission tower and conductor line systems become important infrastructures in modern societies. The analysis of wind-induced dynamic responses of transmission towers is an essential task in the design of spatial lattice tower structures. Wind effects on the world's tallest transmission tower are presented in this paper. The tower with a total height of 370 metres, part of the Zhoushan long-span transmission project, enables high voltage conductor lines to span as long as 2750 metres over the typhoon-prone sea strait. A multi-DOF aeroelastic model test with and without conductor lines was carried out to investigate the dynamic performances of Zhoushan tower during typhoon events. Using the response measurement results in the wind tunnel, the inertial force based gust loading factors (GLFs) are applied to represent dynamic wind load effects on the tower for structural design purposes. Time domain computational simulation approach is also employed to predict dynamic responses of the transmission tower and the displacement based gust response factors (GRFs). The fair comparison of GLFs or GRFs are made between the results of the experimental approach and the computational simulation approach, which is an effective alternative way for quickly assessing dynamic wind load effects on high-rise and complex tower structures.
机译:大跨度输电塔和导线系统成为现代社会的重要基础设施。输电塔风致动力响应的分析是空间格子塔结构设计中的重要任务。本文介绍了风对世界上最高的输电塔的影响。该塔的总高度为370米,是舟山大跨度输电工程的一部分,使高压输电线在台风多发的海峡上跨长达2750米。进行了有和没有导体线的多自由度气弹模型试验,以研究舟山塔在台风期间的动力性能。使用风洞中的响应测量结果,基于惯性力的阵风载荷因子(GLF)应用于代表风速载荷对塔架的动态影响,以进行结构设计。时域计算仿真方法也被用来预测输电塔的动态响应和基于位移的阵风响应因子(GRF)。实验方法和计算仿真方法的结果之间进行了GLF或GRF的公平比较,这是一种快速评估高层建筑和复杂塔架结构的动态风荷载影响的有效替代方法。

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