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Compliant liquid column damper modified by shape memory alloy device for seismic vibration control

机译:由形状记忆合金装置改进的柔和液柱阻尼器,用于地震振动控制

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摘要

Liquid column dampers (LCDs) have long been used for the seismic vibration control of flexible structures. In contrast, tuning LCDs to short-period structures poses difficulty. Various modifications have been proposed on the original LCD configuration for improving its performance in relatively stiff structures. One such system, referred to as a compliant-LCD has been proposed recently by connecting the LCD to the structure with a spring. In this study, an improvement is attempted in compliant LCDs by replacing the linear spring with a spring made of shape memory alloy (SMA). Considering the dissipative, super-elastic, force-deformation hysteresis of SMA triggered by stress-induced micro-structural phase transition, the performance is expected to improve further. The optimum parameters for the SMA-compliant LCD are obtained through design optimization, which is based on a nonlinear random vibration response analysis via stochastic linearization of the force-deformation hysteresis of SMA and dissipation by liquid motion through an orifice. Substantially enhanced performance of the SMA-LCD over a conventional compliant LCD is demonstrated, the consistency of which is further verified under recorded ground motions. The robustness of the improved performance is also validated by parametric study concerning the anticipated variations in system parameters as well as variability in seismic loading.
机译:液柱阻尼器(LCD)长期以来一直用于柔性结构的地震振动控制。相反,将LCD调整为短周期结构会带来困难。已经提出了对原始LCD配置的各种修改以改善其在相对刚性的结构中的性能。近来已经提出了一种这样的系统,称为顺应性LCD,其通过利用弹簧将LCD连接到结构上来进行。在这项研究中,通过用形状记忆合金(SMA)制成的弹簧代替线性弹簧,试图对兼容的LCD进行改进。考虑到应力诱导的微结构相变触发的SMA的耗散,超弹性,力变形滞后,其性能有望进一步提高。 SMA兼容LCD的最佳参数是通过设计优化获得的,该设计优化基于SMA力变形滞后的随机线性化以及通过孔口的液体运动引起的耗散的非线性随机振动响应分析。展示了SMA-LCD在传统兼容LCD上的显着增强的性能,其一致性在记录的地面运动下得到了进一步验证。通过有关系统参数的预期变化以及地震荷载变化的参数研究,也可以验证改进性能的鲁棒性。

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