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Distributed multiple tuned mass dampers for seismic response control in bridges

机译:分布多调谐质量阻尼器,用于桥梁的地震反应控制

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摘要

The effectiveness of distributed multiple tuned mass dampers (d-MTMDs) in seismic response control of bridges was investigated. Numerical models were developed for evaluating the seismic response of concrete and steel truss bridges without and with tuned mass damper(s) (TMD(s)) installed. The modal frequencies and mode shapes of the uncontrolled and controlled bridges were used for suitable design and placement of the TMDs. Two horizontal components of earthquakes were simultaneously applied while duly considering the bi-directional interaction of the seismic response. The seismic response of the bridges was evaluated when all multiple tuned mass dampers (MTMDs) were installed at mid-span and when d-MTMDs were installed as per the modal properties. Coupled differential equations of motion of the bridges subjected to the bi-directional earthquake ground motions were derived and solved using the modified modal superposition method. Variations in pier base shear, support reaction, deck displacement and deck acceleration under real earthquake ground motions were computed to study the effectiveness of installing MTMDs and d-MTMDs. The results showed that d-MTMDs installed as per the modal properties of the bridges are effective in reducing the maximum pier base shear, support reaction, deck displacement and deck acceleration in both the longitudinal and transverse directions.
机译:研究了桥梁地震反应控制中分布式多调调质质量阻尼器(D-MTMDS)的有效性。开发了数值模型,用于评估混凝土和钢桁架桥的地震反应,没有安装调谐质量阻尼器(TMD)。不受控制和受控桥的模态频率和模式形状用于TMD的合适设计和放置。同时应用地震的两个水平分量,同时正式考虑了地震反应的双向相互作用。当所有多个调谐质量阻尼器(MTMDS)安装在中间跨度时,并且当根据模态性能安装D-MTMD时,评估桥的地震响应。使用改性的模态叠加法来推导和解决经受双向地震地面运动的桥梁的耦合差动方程。计算墩基剪切,支持反应,甲板位移和实际地震地面运动下的甲板加速度的变化,以研究安装MTMDS和D-MTMD的有效性。结果表明,根据桥梁的模态性能安装的D-MTMD可有效地减少纵向和横向方向上的最大墩基剪切,支持反应,甲板位移和甲板加速度。

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