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Analytical solution of seismic response of base-isolated structure with supplemental inerter

机译:附加惯性的基础隔震结构地震响应的解析解

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摘要

Closed-form solutions are derived for the modal characteristics and seismic response of a base-isolated structure equipped with additional inerters. By simplifying the structure-isolator-inerter system in terms of the two-degree-of-freedom (2DOF) model, the modal frequencies, mode shapes, damping ratios, and participation factors of the system are derived. Consequently, analytical seismic response solutions are formulated by the modal superposition method. Utilizing these analytical solutions, an extensive parametric study has been carried out to investigate the effect of supplement inerters on both the modal characteristics and seismic response of the structure-isolator-inerter system. There is a critical inertance leading to the zero second modal participation factor (ie, the disappearance of the second modal response). The associated critical inertance ratio is derived in closed form as well. Moreover, it is observed that the reduction of deformation of isolators by increasing the inertance may be offset by the increase in relative displacements of the superstructure. To circumvent this adverse effect, an optimal range of inertance is identified whereby both the deformation of isolators and the relative displacement of the superstructure are mitigated concurrently.
机译:封闭形式的解决方案是为模态特征和地震响应的基础隔离结构,配备了额外的惰性推导的。通过简化两自由度(2DOF)模型的结构隔离器-惯性系统,可以得出系统的模态频率,模态形状,阻尼比和参与因子。因此,通过模态叠加法来制定分析地震响应解。利用这些分析解决方案,进行了广泛的参数研究,以研究补充惰性气体对结构-隔离物-惰性系统的模态特征和地震响应的影响。关键惯性导致第二模态参与因子为零(即第二模态响应的消失)。相关的临界惯性比也以封闭形式导出。此外,已经观察到,通过增加惯性来减小隔离器的变形可以被上部结构的相对位移的增加所抵消。为了避免这种不利影响,确定了最佳的惯性范围,从而同时减轻了隔震器的变形和上部结构的相对位移。

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