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Optimal tuning and assessment of inertial dampers with grounded inerter for vibration control of seismically excited base-isolated systems

机译:带有接地惯性的惯性阻尼器的优化调谐和评估,用于地震激励基础隔震系统的振动控制

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In this paper, the concept of an ideal grounded linear inerter, endowing supplemental inertia to passive linear tuned mass-dampers (TMDs) through its inertance property without increasing the TMD mass, is considered to reduce lateral displacement demands in base isolated structural systems (BISs). Optimal tuned mass-damper-inerter (TMDI) design parameters are numerically determined to maximize energy dissipation by the TMDI under stationary white noise support excitation. Performance of these optimally designed TMDI-equipped BISs is assessed for stationary white and colored noise excitations as well as for four recorded earthquake acceleration ground motions (GMs) with different non-stationary frequency content. It is found that for fixed mass ratio the inclusion of the grounded inerter reduces significantly secondary mass displacement and stroke for all considered excitations while it improves appreciably BIS displacement demands except for the particular case of a near-fault accelerogram characterized by early arrival of a high-energy low-frequency pulse as captured in its wavelet spectrogram. More importantly, it leads further to reductions to BIS acceleration demands with the exception of colored noise excitation for which an insignificant increase is noted. The positive effects of the inerter saturate with increasing inertance and BIS damping ratio demonstrating that small inertance values are more effective in vibration suppression of BISs with low inherent damping. Overall, it is recommended to combine low damping isolation layers with large inertance and low secondary mass TMDIs.
机译:在本文中,一种理想的接地线性惯性装置的概念是通过在不增加TMD质量的情况下通过其惯性来赋予惯性线性调谐质量阻尼器(TMDs)附加惯性,来减少基础隔震结构系统(BISs)的侧向位移要求)。通过数值确定最佳调谐质量阻尼器(TMDI)设计参数,以在固定白噪声支持激励下通过TMDI最大化能量消耗。这些优化设计的配备TMDI的BIS的性能针对固定的白色和彩色噪声激励以及具有不同非固定频率含量的四个记录的地震加速度地面运动(GM)进行了评估。发现对于固定的质量比,包括接地的惯性在内,对于所有考虑的激励,都显着降低了次级质量位移和冲程,同时它显着改善了BIS位移需求,除了特殊情况下的近断层加速度计,其特征是高提前到达小波谱图中捕获的能量低频率脉冲。更重要的是,除了显着增加的有色噪声激励外,它还进一步降低了BIS加速要求。惯性的积极效果随着惯性和BIS阻尼比的增加而饱和,这表明较小的惯性值在具有低固有阻尼的BIS的振动抑制中更有效。总体而言,建议将低阻尼隔离层与大惯量和低次级质量TMDI结合使用。

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