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Multi-objective stochastic-structural-optimization of shape-memory-alloy assisted pure-friction bearing for isolating building against random earthquakes

机译:形状记忆合金辅助纯摩擦轴承的多目标随机结构优化

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摘要

The optimal stochastic performance of pure friction system supplemented with SMA-restrainer (SMA-PF) is presented based on a framework of multi-objective optimization. The evaluation of system response for this is based on nonlinear random vibration analysis. The optimizing design variables are based on two mutually conflicting objectives, involving maximizing the isolation efficiency as well as isolator displacement. The proposed optimal design, thus, not only maximizes the isolation efficiency but also impose due consideration to the bearing displacement. The optimal bearing is shown to substantially reduce the bearing displacement with nominal sacrifice in isolation efficiency. Comparison of the multi-objective Pareto fronts reveals much facilitated trade-off among the mutually conflicting objectives in SMA-PF than in PF system. The viability of the optimal performance is further verified under recorded ground motions, which is observed to be in parity to the stochastic response behavior. The reduction in the residual bearing displacement is also observed.
机译:在多目标优化框架的基础上,提出了带有SMA约束器(SMA-PF)的纯摩擦系统的最优随机性能。为此,系统响应的评估基于非线性随机振动分析。优化设计变量基于两个相互矛盾的目标,其中包括最大化隔离效率以及隔离器位移。因此,所提出的最佳设计不仅使隔离效率最大化,而且还充分考虑了轴承的位移。显示出最佳轴承可显着减少轴承位移,同时在隔离效率上有一些名义上的牺牲。多目标帕累托前沿的比较表明,与PF系统相比,SMA-PF中相互冲突的目标之间的折衷要容易得多。最佳性能的可行性在记录的地面运动下得到了进一步验证,据观察,该运动与随机响应行为相当。还观察到残余轴承位移的减少。

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