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Wind-induced responses of supertall buildings considering soil-structure interaction

机译:考虑土-结构相互作用的超高层建筑风致响应

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In this study, a simplified three-dimensional calculation model is developed for the dynamic analysis of soil-pile group-supertall building systems excited by wind loads using the substructure method. Wind loads acting on a 300-m building in different wind directions and terrain conditions are obtained from synchronous pressure measurements conducted in a wind tunnel. The effects of soil-structure interaction (SSI) on the first natural frequency, wind-induced static displacement, mot mean square (RMS) of displacement, and RMS of acceleration at the top of supertall buildings are analyzed. The findings demonstrate that with decreasing soil shear wave velocity, the first natural frequency decreases and the static displacement, RMS of displacement and RMS of acceleration increase. In addition, as soil material damping decreases, the RMS of displacement and the RMS of acceleration increase.
机译:在这项研究中,开发了一种简化的三维计算模型,用于利用子结构方法对风荷载引起的土桩-超高层建筑系统进行动力分析。通过在风洞中进行同步压力测量,可以得出在不同风向和地形条件下作用于300米建筑物上的风荷载。分析了土-结构相互作用(SSI)对超高层建筑顶部的第一自然频率,风致静态位移,位移的均方根(RMS)和加速度的RMS的影响。研究结果表明,随着土剪切波速度的减小,第一固有频率减小,静态位移,位移RMS和加速度RMS增大。另外,随着土壤材料阻尼的减小,位移的均方根值和加速度的均方根值也增加。

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