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Effect of Frequency Characteristics of Ground Motion on Response of Tuned Mass Damper Controlled Inelastic Concrete Frame

机译:地面运动频率特性对调谐质量阻尼器控制内部混凝土框架响应的影响

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摘要

This paper investigates the performance of tuned mass damper (TMD) and dynamic behavior of TMD-controlled concrete structure considering the ground motion (GM) characteristics based on frequency content. The effectiveness of TMD in reducing the structural response and probability of collapse of the building frames are affected by the frequency characteristics of GMs. To attenuate the seismic vibration of the buildings, the TMD controlled building has been designed based on the modal analysis (modal frequencies and modal mass participation ratio). In this study, to investigate the performance of TMD, four different heights (i.e., 3, 5, 10, 20 stories) inelastic concrete moment-resisting frames equipped with TMDs are developed using an open-source finite element software. A series of numerical analyses have been conducted using sixty earthquakes classified into three categories corresponding to low, medium, and high-frequency characteristics of GMs. To evaluate the proposed strategy, peak lateral displacements, inter-story drift, and the probability of collapse using fragility analysis have been investigated through the structures equipped with and without TMD. The results appraise the effect of TMD and compare the seismic responses of earthquake frequency contents and the vibration control system of the inelastic building frames.
机译:本文研究了考虑基于频率内容的地面运动(GM)特性考虑TMD控制混凝土结构的调谐质量阻尼器(TMD)和动态行为的性能。 TMD在降低建筑帧的结构响应和崩溃崩溃概率时的有效性受GMS频率特性的影响。为了衰减建筑物的地震振动,基于模态分析(模态频率和模态质量参与比)设计了TMD控制建筑。在该研究中,研究TMD的性能,使用开源有限元软件开发配备有TMD的四种不同高度(即3,5,10,20个故事)的无弹性混凝土力矩抵抗框架。使用六十地地震进行了一系列数值分析,分为对应于GMS的低,中等和高频特性的三个类别。为了评估所提出的策略,峰值横向位移,故事间漂移和使用脆弱性分析的崩溃概率通过配备的结构进行了调查,并且没有TMD。结果评估了TMD的效果,并比较了抗弹性建筑框架的地震频率内容和振动控制系统的地震反应。

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