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Seismic retrofit of reinforced concrete structures using magnetorheological mass driver: Evolving a design methodology

机译:磁流变肿块钢筋混凝土结构的地震改造:演化设计方法

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This paper proposes a design methodology for a damping enhancement-based seismic retrofitting of a damaged reinforced concrete (RC) model frame with a mass driver (MD) and magnetorheological (MR) damper. The MR-MD is applied with preset constant current inputs and the structure+MR-MD system is subjected to harmonic and seismic base excitations. Equivalent effective damping for a biviscous MR damper is derived both from energy and secant damping considerations. The effect of yielding force of the MR damper, mass value of the secondary system, and non-linearity associated with input accelerations are discussed. The paper proposes a suboptimum frequency tuning, that is, the frequency of the secondary MR-MD is marginally lower than the optimum value, anticipating a degrading stiffness and frequency drop of the target structure, typical of materials like masonry and concrete. Experimental investigations with undertuned, overtuned, and near-optimum tuned conditions of the secondary MR-MD system are performed to highlight that operation with near optimum damping plays a significant role, particularly when MR dampers are used. Higher effective damping associated with higher preset current inputs have a tendency to be counter-productive, which is proved experimentally and analytically. Four seismic performance parameters are calculated, which showed a substantial reduction of acceleration and displacement responses on the experimental structure when the damper is operated at lower input currents. From analytical and experimental investigations, a simplified retrofit design methodology for a degraded RC superstructure is proposed and experimentally validated through incorporating a mass driver coupled with a non-linear damper.
机译:本文提出了一种具有质量驱动器(MD)和磁流变(MR)阻尼器的受损增强混凝土(RC)模型框架的阻尼增强的抗震改装的设计方法。 MR-MD应用预设恒流输入,结构+ MR-MD系统经受谐波和地震刺激。对Biviscous MR阻尼器的等效有效阻尼来自能量和割线阻尼考虑因素。讨论了MR阻尼器的屈服力,二级系统的质量值和与输入加速相关的非线性的影响。本文提出了一种次聚频率调谐,即次级MR-MD的频率比最佳值低于最佳值,预期目标结构的劣化刚度和频率下降,典型的砌体和混凝土等材料。进行了次级MR-MD系统的特性,升高和接近最佳调谐条件的实验研究,以突出显示与近最佳阻尼的操作发挥着重要作用,特别是当使用MR DAMPERS时。与较高预设电流输入相关的较高的有效阻尼具有反向生产性的趋势,这在实验和分析中被证明。计算四个地震性能参数,当在较低输入电流下操作时,在实验结构上显着降低了实验结构上的加速度和位移响应。从分析和实验研究中,提出了一种用于降级的RC上层结构的简化改造设计方法,并通过结合与非线性阻尼器耦合的质量驱动器进行实验验证。

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