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Seismic control of modularized suspended structures with optimal vertical distributions of the secondary structure parameters

机译:模块化悬浮结构的地震控制具有最佳垂直分布的二级结构参数

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Suspended building systems with vibration control features dissipate seismic energy by the interaction between their main parts and the suspended parts; they are also architecturally appealing. A modularized suspended structure has been previously proposed to overcome the fragility of its secondary structure and to enhance overall attenuation. However, the full potential of modularization is yet to be achieved via the previous configuration, especially in terms of multi-mode control. In this study, the protection effect of prefabricated modules is further harnessed in such a way that drastic vertical-irregularities of inter-story stiffness and dampers within the suspended segment are allowed. Vertical distribution vectors of structural parameters were set as the variables in genetic-algorithm optimizations, with the maximum mean square moment of the primary structure being the main objective. The results show considerably improved attenuation of responses in multiple modes instead of only the fundamental mode. In the optimized distributions, peaks of damping coefficient occur at the troughs of inter-story stiffness, but without a highly concentrated pattern. Models with different irregularity levels have well-separated Pareto fronts; this indicates that comprehensive improvement can be obtained at compromised choices. The main mechanism is that, with the well-designed irregularities, the secondary structure provides satisfactory dissipation and tuning to the primary structure in the major modes. The analysis with non-stationary excitations reveals that optimized vertical distributions further quicken the vibration decay. The time-history performance verifications and the structural uncertainty analysis are also carried out.
机译:具有振动控制的悬挂式建筑系统通过其主要部件与悬挂部件之间的相互作用来耗散地震能量;它们也是架构上吸引人。先前已经提出了模块化的悬浮结构来克服其二级结构的脆性并增强整体衰减。然而,通过先前的配置尚未实现模块化的全部潜力,特别是在多模式控制方面。在本研究中,进一步利用预制模块的保护效果,使得允许悬浮区段内的故事阶段刚度和阻尼器的急剧垂直 - 不规则性。结构参数的垂直分配矢量被设定为遗传算法优化中的变量,主要结构的最大均线时刻是主要目标。结果表明,多种模式的响应的衰减显着改善而不是仅基本模式。在优化的分布中,阻尼系数的峰在故事间刚度的槽处发生,但没有高度浓缩的图案。具有不同违规水平的模型具有良好分离的帕累托前线;这表明可以在受损的选择下获得全面的改进。主要机理是,随着设计良好的不规则性,二级结构提供了令人满意的耗散和调谐到主要模式中的主要结构。具有非静止激励的分析表明,优化的垂直分布进一步加快了振动衰减。还执行了时间历史性能验证和结构不确定性分析。

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