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An experimental study of vibration control of wind-excited high-rise buildings using particle tuned mass dampers

机译:粒子调谐质量阻尼器对高楼高风建筑振动控制的实验研究

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A particle tuned mass damper (PTMD) system is the combination of a traditional tuned mass damper (TMD) and a particle damper (PD). This paper presents the results of an experimental and analytical study of the damping performance of a PTMD attached to the top of a benchmark model under wind load excitation. The length ratio of the test model is 1:200. The vibration reduction laws of the system were explored by changing some system parameters (including the particle material, total auxiliary mass ratio, the mass ratio between container and particles, the suspending length, and wind velocity). An appropriate analytical solution based on the concept of an equivalent single-unit impact damper is presented. Comparison between the experimental and analytical results shows that, with the proper use of the equivalent method, reasonably accurate estimates of the dynamic response of a primary system under wind load excitation can be obtained. The experimental and simulation results show the robustness of the new damper and indicate that the damping performance can be improved by controlling the particle density, increasing the amount of particles, and aggravating the impact of particles etc.
机译:粒子调谐质量阻尼器(PTMD)系统是传统调谐质量阻尼器(TMD)和粒子阻尼器(PD)的组合。本文介绍了在风荷载激励下附着在基准模型顶部的PTMD的阻尼性能的实验和分析研究结果。测试模型的长度比为1:200。通过更改一些系统参数(包括颗粒材料,总辅助质量比,容器与颗粒之间的质量比,悬挂长度和风速)来探索系统的减振规律。提出了一种基于等效单单元减震器的概念分析方法。实验结果和分析结果之间的比较表明,通过适当使用等效方法,可以合理准确地估算风荷载激励下一次系统的动力响应。实验和仿真结果表明了新型减振器的鲁棒性,表明通过控制颗粒密度,增加颗粒数量,加重颗粒的冲击力等可以改善阻尼性能。

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