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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Numerical Study on Nonlinear Semiactive Control of Steel-Concrete Hybrid Structures Using MR Dampers
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Numerical Study on Nonlinear Semiactive Control of Steel-Concrete Hybrid Structures Using MR Dampers

机译:基于MR阻尼器的钢混混合结构非线性半主动控制的数值研究

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Controlling the damage process, avoiding the global collapse, and increasing the seismic safety of the super high-rise building structures are of great significance to the casualties’ reduction and seismic losses mitigation. In this paper, a semiactive control platform based on magnetorheological (MR) dampers comprising the Bouc-Wen model, the semi-active control law, and the shear wall damage criteria and steel damage material model is developed in LS-DYNA program, based on the data transferring between the main program and the control platform; it can realize the purpose of integrated modeling, analysis, and design of the nonlinear semi-active control system. The nonlinear seismic control effectiveness is verified by the numerical example of a 15-story steel-concrete hybrid structure; the results indicate that the control platform and the numerical method are stable and fast, the relative displacement, shear force, and damage of the steel-concrete structure are largely reduced using the optimal designed MR dampers, and the deformations and shear forces of the concrete tube and frame are better consorted by the control devices.
机译:控制破坏过程,避免整体倒塌,提高超高层建筑结构的地震安全性,对减少人员伤亡和减轻地震损失具有重要意义。本文在LS-DYNA程序的基础上,开发了一种基于磁流变(MR)阻尼器的半主动控制平台,该平台包括Bouc-Wen模型,半主动控制律,剪力墙损伤准则和钢损伤材料模型。主程序与控制平台之间的数据传输;它可以实现非线性半主动控制系统集成建模,分析和设计的目的。通过15层钢-混凝土混合结构的数值实例验证了非线性地震控制效果。结果表明,该控制平台和数值方法稳定,快速,采用优化设计的MR阻尼器可大大减少钢混凝土结构的相对位移,剪切力和破坏,并可减小混凝土的变形和剪切力。管和框架可以通过控制设备更好地搭配。

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