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Stochastic optimal design of novel nonlinear base isolation system for seismic‐excited building structures

机译:新型地震激励结构非线性基础隔震系统的随机优化设计

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摘要

A novel nonlinear isolation system is numerically investigated by employing a stochastic response evaluation and experimentally studied with a small-scale preliminary prototype. The stochastic response of isolated building structures is first derived using a nonstationary random process and time-dependent equivalent linearization, regarding the nonlinear restoring force behavior of the proposed isolator. A parametric study is then performed to evaluate the potential influences of earthquake excitations properties and the optimum force ratio of the isolator that adopts the widely used Kanai-Tajimi model. According to the insights from the parametric study, the optimal design for nonlinear isolation is proposed based on a stochastic optimization procedure with the convergence of different performance objectives. The stochastically optimized isolation system is numerically studied by first comparing the present nonlinear isolator and conventional bearings. The present isolator is systematically illustrated to perform advantageously compared with conventional passive isolators in terms of base drift and structural acceleration through a relatively large group of 40 recorded seismic motions. To further investigate the efficiency of the nonlinear isolator, a benchmark building for smart base-isolation is adopted, and a comparison of the results indicates comparable performances between the proposed passive isolator and the classical active isolation system. Furthermore, an original design of the base isolation system simulating an energy dissipation mechanism is presented with favorable force-deformation behavior from experimental testing on small-scale prototypes.
机译:通过采用随机响应评估,对新型非线性隔离系统进行了数值研究,并通过小规模的初步原型进行了实验研究。考虑到所提出的隔离器的非线性恢复力行为,首先使用非平稳随机过程和时间相关的等效线性化方法来推导独立建筑结构的随机响应。然后进行参数研究,以评估地震激励特性的潜在影响以及采用广泛使用的Kanai-Tajimi模型的隔振器的最佳受力比。根据参数研究的见解,提出了一种基于随机优化程序并具有不同性能指标收敛性的非线性隔离优化设计。通过首先比较当前的非线性隔离器和常规轴承,对随机优化的隔离系统进行了数值研究。系统地说明了本发明的隔振器,与传统的无源隔振器相比,在相对较大的一组记录的40次地震运动的基础漂移和结构加速度方面具有优势。为了进一步研究非线性隔离器的效率,采用了用于智能基础隔离的基准构建,结果的比较表明,所提出的无源隔离器与经典有源隔离系统之间的性能相当。此外,通过对小规模原型机进行的实验测试,提出了一种模拟基础能量消散机制的基础隔离系统的原始设计,并具有良好的力-变形特性。

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