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Vibration Control of a Wind-Excited Benchmark Tall Building with Complex Lateral-Torsional Modes of Vibration

机译:具有复杂横向扭转模式的风激励基准高层建筑的振动控制

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This paper describes a proposed wind-excited benchmark tall building incorporating three-dimensional lateral-torsional modes of vibration, which is typical of a significant number of modern tall buildings. A series of wind tunnel pressure tests were conducted on a 1:400 scale model to determine the translational and torsional wind forces acting on the benchmark building. A finite element model was also constructed and mass, damping, and stiffness matrices were subsequently formulated as an evaluation model for numerical analysis. The evaluation model was further simplified to a state reduced-order system (ROS) using the state order reduction method. A numerical vibration control example was conducted to demonstrate the suppression of the wind-induced three-dimensional lateral-torsional motions using a bi-directional tuned mass damper (TMD) incorporating two magnetorheological (MR) dampers, one in each orthogonal direction, to act as a semi-active control system, referred to as a smart tuned mass damper (STMD). The optimal control forces generated by the MR dampers were obtained through the linear quadratic regulator (LQR) to minimize the storey accelerations. The formulation details, methodology and numerical simulation results are outlined in this paper.
机译:本文介绍了一种拟议的风激励基准高层建筑,该结构包含了三维横向扭转振动模式,这是大量现代高层建筑的典型特征。在1:400比例模型上进行了一系列风洞压力测试,以确定作用在基准建筑物上的平移和扭转风力。还构建了一个有限元模型,随后将质量,阻尼和刚度矩阵公式化为数值分析的评估模型。使用状态降阶方法将评估模型进一步简化为状态降阶系统(ROS)。进行了一个数值振动控制示例,以演示使用双向调谐质量阻尼器(TMD)结合了两个磁流变(MR)阻尼器(在每个正交方向上各作用一个)来抑制风引起的三维横向扭转运动作为一种半主动控制系统,称为智能调谐质量阻尼器(STMD)。 MR阻尼器产生的最佳控制力是通过线性二次调节器(LQR)获得的,以使楼层加速度最小。本文概述了配方细节,方法和数值模拟结果。

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