Study on damping performance of non-ideal particle-tuned inerter damper

Chenyang Han
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Abstract

Aiming at the shortcomings of the current particle dampers and the needs of civil engineering vibration damping, while considering the damping in the non-ideal inertial vessel, a new type of non-ideal particle tuned inerter damper (NPTID) is proposed. Firstly, the construction and technical realization of NPTID are introduced, the mechanical model of NPTID is proposed based on the principle of energy dissipation by particle collision, and the motion control equations of the single-degree-of-freedom structure with an additional NPTID are established; then three natural seismic waves and one artificial seismic wave are selected as the external excitations, and the damping performance of the NPTID is analyzed; finally, the influence of key parameters on the control effect of the NPTID is investigated by parametric analysis. The results show that NPTID has good control effect, and can realize the reduction ratio of more than 43% by utilizing a 0.1% particle mass ratio.
非理想粒子调谐惯性阻尼器的阻尼性能研究
针对目前颗粒阻尼器的缺点和土木工程减振的需要,在考虑非理想惯性容器阻尼的同时,提出了一种新型非理想颗粒调谐阻尼器(NPTID)。首先介绍了 NPTID 的构造和技术实现,根据粒子碰撞耗能原理提出了 NPTID 的力学模型,建立了附加 NPTID 的单自由度结构的运动控制方程;然后选取三个天然地震波和一个人工地震波作为外部激励,分析了 NPTID 的阻尼性能;最后通过参数分析研究了关键参数对 NPTID 控制效果的影响。结果表明,NPTID 具有良好的控制效果,利用 0.1% 的颗粒质量比可实现 43% 以上的减震率。
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