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Hybrid Fluid-dynamic Control Devices To Attenuate Slender Structures Oscillations

机译:混合流体动力控制装置,可减轻细长结构的振动

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In the present work, a hybrid fluid-dynamic control system is proposed for the active/passive control of bending oscillations of tall and slender buildings under wind forces. The mathematical-numerical model of the hybrid system is developed from the classical tuned liquid column damper composed of one or more "U" tubes filled with fluid. When in motion the control system generates hydraulic forces which counteract the inertia forces induced by the dynamic loadings acting on the structure.rnSome of the main design aspects, dynamic properties and the resulting performance of the proposed hybrid control system as compared to those of the traditional liquid columns and tuned mass dampers for passive control are presented and discussed with the aid of the results obtained by using both analytical and FEM models together with comparisons between the uncontrolled and controlled responses of the structure having attached the proposed hybrid fluid-dynamic devices.rnTwo examples of a practical application are presented to demonstrate the feasibility and performance of the hybrid control device in attenuating the bending oscillation amplitudes of slender structures of tall buildings under wind forces.
机译:在目前的工作中,提出了一种混合流体动力控制系统,用于主动/被动控制风力作用下高层和细长建筑物的弯曲振动。混合系统的数学数字模型是根据经典的调谐液柱阻尼器开发的,该阻尼器由一个或多个充满流体的“ U”形管组成。在运动中时,控制系统产生的水力抵消了由作用在结构上的动态载荷引起的惯性力。与传统技术相比,拟议的混合控制系统的一些主要设计方面,动态特性以及所产生的性能提出并讨论了用于被动控制的液柱和调谐质量阻尼器,该方法通过使用解析模型和FEM模型,以及在已安装了拟议的混合流体动力装置的结构的非受控响应和受控响应之间进行比较而获得的结果。给出了一个实际应用实例,以证明混合控制装置在减弱风力作用下高层建筑细长结构的弯曲振动幅度方面的可行性和性能。

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