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Experimental evaluation of eccentric rotational channel-type damping system for vibration control of building structures

机译:偏心旋转通道式减振系统对建筑结构振动控制的实验评估

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摘要

A theoretical and experimental investigation of an eccentric rotational channel-type damping system is presented. The proposed damping system can incorporate any type of existing passive dampers and provide a wider field of view to residents compared with existing damping systems. Furthermore, the efficiency of the proposed damping system can be magnified by modifying the geometry of the channel-type secondary system. Cyclic loading and free vibration tests of a full-scale test model with steel dampers were conducted to investigate the validity of the suggested simple behavior prediction model and the vibration characteristics of the proposed damping system. The experimental results were in good agreement with the numerical analysis. The results of numerical prediction studies on a single degree of freedom system with the proposed damping system also showed the effect of the eccentric rotational channel-type damping system on seismic response reduction.
机译:提出了偏心旋转通道式阻尼系统的理论和实验研究。与现有的阻尼系统相比,所提出的阻尼系统可以结合任何类型的现有的被动阻尼器,并且为居民提供更宽的视野。此外,可以通过修改通道型二次系统的几何形状来提高所提出的阻尼系统的效率。进行了带有钢制阻尼器的全尺寸试验模型的循环载荷和自由振动试验,以研究所建议的简单行为预测模型的有效性以及所提出的阻尼系统的振动特性。实验结果与数值分析吻合良好。利用所提出的阻尼系统对单自由度系统进行数值预测研究的结果还表明,偏心旋转通道式阻尼系统对减震的影响。

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