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Seismic response control of benchmark highway bridge using variable dampers

机译:可变阻尼器控制基准公路桥梁的地震响应

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摘要

The performance of variable dampers for seismic protection of the benchmark highway bridge (phase I) under six real earthquake ground motions is presented. A simplified lumped mass finite-element model of the 91/5 highway bridge in Southern California is used for the investigation. A variable damper, developed from magnetorheological (MR) damper is used as a semi-active control device and its effectiveness with friction force schemes is investigated. A velocity-dependent damping model of variable damper is used. The effects of friction damping of the variable damper on the seismic response of the bridge are examined by taking different values of friction force, step-coefficient and transitional velocity of the damper. The seismic responses with variable dampers are compared with the corresponding uncontrolled case, and controlled by alternate sample control strategies. The results of investigation clearly indicate that the base shear, base moment and mid-span displacement are substantially reduced. In particular, the reduction in the bearing displacement is quite significant. The friction and the two-step friction force schemes of variable damper are found to be quite effective in reducing the peak response quantities of the bridge to a level similar to or better than that of the sample passive, semi-active and active controllers.
机译:提出了在六个实际地震地震动下可变阻尼器在基准公路桥梁(第一阶段)地震防护中的性能。研究使用了南加州91/5公路桥梁的简化集总质量有限元模型。由磁流变(MR)阻尼器开发的可变阻尼器用作半主动控制装置,并研究了其在摩擦力方案下的有效性。使用了可变阻尼器的速度相关阻尼模型。通过采用阻尼器的摩擦力,阶跃系数和过渡速度的不同值,研究了可变阻尼器的摩擦阻尼对桥梁地震响应的影响。将具有可变阻尼器的地震响应与相应的不受控制的情况进行比较,并通过可选的样本控制策略进行控制。研究结果清楚地表明,基础剪力,基础弯矩和中跨位移都大大降低了。特别地,轴承位移的减小是相当显着的。发现可变阻尼器的摩擦和两步摩擦力方案在将电桥的峰值响应量减小到类似于或优于样本无源,半有源和有源控制器的水平上非常有效。

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