Numerical study on nonlinear semiactive control of steel-concrete hybrid structures using MR dampers

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Abstract

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. © 2013 Long-He Xu et al.

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Xu, L. H., Li, Z. X., & Lv, Y. (2013). Numerical study on nonlinear semiactive control of steel-concrete hybrid structures using MR dampers. Mathematical Problems in Engineering, 2013. https://doi.org/10.1155/2013/401410

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