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Performance-based seismic retrofitting of frame structures using negative stiffness devices and fluid viscous dampers via optimization

机译:基于性能的帧间结构抗震改造,通过优化使用负刚度装置和流体粘性阻尼器

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摘要

In this paper, an optimization approach for the seismic retrofitting of inelastic moment resisting frames (MRFs) equipped with nonlinear fluid viscous dampers (FVDs) and negative stiffness devices (NSDs) is presented. The goal of the optimization is to minimize a cost-related objective function, which accounts for the cost of the supplemental FVDs and NSDs. The mechanical properties and the topological layout of both the FVDs and NSDs are considered as design variables and simultaneously optimized during the optimization process. A loss estimation analysis is utilized as a performance constraint, where the PEER framework is adopted. The structural response is evaluated using a nonlinear time history analysis (NTHA), which accounts for the nonlinear behavior of the MRF elements, FVDs, and NSDs. The optimization problem is formulated using differentiable functions only, making it suitable for an efficient gradient-based optimization solution scheme. The gradients are efficiently derived using the adjoint sensitivity analysis approach. Two numerical examples show the robustness and efficiency of the presented methodology, where the optimized design relies on NSDs and FVDs in both examples.
机译:本文介绍了配备有非线性流体粘性阻尼器(FVDS)和负刚度装置(NSD)的抗弹性力矩抵抗框架(MRF)的地震改装的优化方法。优化的目标是最大限度地减少与成本相关的目标函数,其占补充FVDS和NSD的成本。 FVDS和NSD的机械性能和拓扑布局被认为是设计变量,并在优化过程中同时优化。损失估计分析用作性能约束,其中采用了对等框架。使用非线性时间历史分析(NTHA)来评估结构响应,该分析占MRF元素,FVDS和NSD的非线性行为。优化问题仅使用可微分功能,使其适用于基于有效的基于梯度的优化解决方案方案。使用伴随灵敏度分析方法有效地派生梯度。两个数值示例显示了所提出的方法的稳健性和效率,其中优化的设计依赖于两个示例中的NSD和FVDS。

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