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Control of Vibrations of Common Pedestrian Bridges in Jordan Using Tuned Mass Dampers

机译:用调谐质量阻尼器控制约旦普通行人桥梁的振动

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Due to their inherent slenderness and lightness, pedestrian bridges are typically subtle to human induced vibrations. This study was conducted to investigate the effect of human induced vibrations on common simply supported steel footbridges in Jordan, especially those with natural frequencies between 2 to 4 Hz. Such fundamental frequency is close to human movement frequency of walking, jumping and running. The ETABS software was utilized to develop a finite element model (FEM) in order to identify the footbridge dynamic properties including frequency, natural period, stiffness and the critical length at which the induced-vibrations become of great effect. The bridge was excited with multiple human walking and running loading scenarios. The response of the footbridge was evaluated and compared with and without integrating tuned mass dampers (TMD) tuned with the fundamental natural frequency of the footbridge in order to optimize appropriate mass, stiffness and damping coefficient. It was observed that after attaching the TMD, the fundamental vibration frequency decreased to stable value less than human excitation frequencies. Also, acceleration, velocity, and displacement responses were decreased significantly to be within acceptable limits. Finally, a recommendation and guidelines are given for considering the induced-vibrations in the design of common footbridges in Jordan.
机译:由于其固有的苗条和亮度,行人桥梁通常是微妙的人类诱导的振动。进行了本研究以调查人类诱导振动对约旦的共同支撑的钢足桥的影响,特别是那些在2至4Hz之间的自然频率的影响。这种基本频率接近人体运动频率的行走,跳跃和跑步。 ETABS软件用于开发有限元模型(FEM),以便识别行人桥动态特性,包括频率,自然时段,刚度和致敏感效果变得效果的临界长度。这座桥很兴奋,有多个人类的行走和运行加载方案。评估行人桥的响应,并与携带脚桥的基本固有频率调节调谐调谐阻尼器(TMD),以优化适当的质量,刚度和阻尼系数。观察到在连接TMD后,基本振动频率降低到稳定的值小于人类励磁频率。此外,加速,速度和位移应答显着降低到可接受的限度范围内。最后,提供了建议和指导方针,以考虑约旦的普通行人桥设计中的诱导振动。

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