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Investigation on wind tunnel tests of a full aeroelastic model of electrical transmission tower-line system

机译:输电塔线系统全气动弹性模型的风洞试验研究

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A full aeroelastic model with one tower two lines to simulate electrical transmission tower-line system was established. Displacements and accelerations of the aeroelastic model of the tower with and without lines under various wind speeds were investigated through boundary layer wind tunnel tests, and the maximum wind loads on, and wind-induced destroyed mode of, the tower-line model were also observed. Meanwhile, the static and dynamic loads on electrical transmission tower transferred from lines were acquired by measuring the strains of the insulators at the ends of lines. The effects of coupling between electrical transmission tower and line on wind-induced vibrations of electrical transmission towers were investigated, and the pattern of wind induced responses along with wind speeds, as well as the characteristics of spectra of wind induced dynamic responses, of the aeroelastic model of the tower with and without line were analyzed. The experimental results indicate that the effects of coupling between transmission tower and line on wind-induced responses of the tower, as well as the across-wind vibration of the tower, must take into consideration in the wind-resistant design of electrical transmission tower; and the reinforcement at the weak parts of electrical transmission tower could effectively increase the survival ability of the tower under strong wind.
机译:建立了以一塔两线模拟输电塔线系统的完整气动弹性模型。通过边界层风洞试验研究了在不同风速下有和没有线的塔的空气弹性模型的位移和加速度,并观察了塔线模型的最大风荷载和风致破坏模式。 。同时,通过测量线路末端绝缘子的应变,获得了从线路传输的输电塔上的静态和动态载荷。研究了输电塔与输电线之间的耦合对输电塔的风致振动的影响,并研究了空气弹性的风致响应模式,风速以及风致动力响应的频谱特征。分析了有无线塔的模型。实验结果表明,输电塔架的抗风设计必须考虑输电塔与线路之间的耦合对塔架风致响应以及塔架的横风振动的影响。输电铁塔薄弱部位的加固可有效提高铁塔在强风下的生存能力。

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