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Passive hybrid systems for earthquake protection of cable-stayed bridge

机译:用于斜拉桥地震防护的被动混合系统

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The performance of passive hybrid control systems for the earthquake protection of a cable-stayed bridge under real earthquake ground motion is presented. A simplified lumped mass finite-element model of the Quincy Bay-view Bridge at Illinois is used for the investigation. A viscous fluid damper (VFD) is used as a passive supplemental energy dissipation device in association with elastomeric and sliding isolation systems to form a passive hybrid control system. The effects of non-linear viscous damping of the VFD on the seismic response of an isolated cable-stayed bridge are examined by taking different values of velocity exponent of the damper. Further, the influence of a variation in viscous damping on the response of the isolated bridge is also investigated. The seismic response of the bridge with passive hybrid systems is compared with the corresponding response of the bridge with only isolation systems, as well as with the uncontrolled bridge. The results of the investigation show that the addition of supplemental damping in the form of a viscous fluid damper significantly reduces the earthquake response of an isolated cable-stayed bridge. The non-linear viscous damping is found to be more effective in controlling the peak isolator displacement of the isolated bridge while simultaneously limiting the base shear in towers.
机译:提出了被动混合控制系统在实际地震作用下斜拉桥抗震性能。伊利诺伊州昆西湾景桥的简化集总质量有限元模型用于研究。粘性流体阻尼器(VFD)与弹性体和滑动隔离系统一起用作被动补充能量消散装置,以形成被动混合控制系统。通过采用阻尼器的速度指数的不同值,研究了VFD的非线性粘滞阻尼对斜拉桥的地震响应的影响。此外,还研究了粘性阻尼变化对隔离桥响应的影响。将具有被动混合系统的桥梁的地震响应与仅具有隔离系统的桥梁以及不受控制的桥梁的地震响应进行比较。调查结果表明,以粘性流体阻尼器的形式添加辅助阻尼可以显着降低隔离式斜拉桥的地震响应。发现非线性粘滞阻尼在控制隔离桥的峰值隔离器位移的同时,同时限制了塔架中的基础剪力时更有效。

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