Modeling and simulation of magnetorheological dampers for the reduction of the seismic response of structures using simulink

Tecnia Pub Date : 2022-08-08 DOI:10.21754/tecnia.v32i2.1402
Miguel Raúl Guzmán Prado
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引用次数: 0

Abstract

The control devices can be used to dissipate the energy of structures subjected to dynamic loads in order to reduce structural damage and prevent the failure of them. The semiactive control devices that have received great attention in recent years are magnetorheological (MR) fluid dampers due to their mechanical simplicity, high dynamic range, large temperature operating range and low power requirements. In the present research work, Matlab and Simulink are used as computational tools for the modeling and simulation of structural control systems with magnetorheological dampers (MRDs). To begin with, the modeling is carried out through simulink block diagrams of the governing differential equations of representative mathematical models of MRDs. Next, a series of simulations is performed in order to replicate experimental results and to be able to validate the modeling step. Finally, the MRDs are integrated together with a semiactive control algorithm and an idealized ten-degrees-of-freedom structure. The main expected outcome is the reduction of the seismic response (response histories, drifts, shear forces and overturning moments).
利用simulink进行磁流变阻尼器的建模与仿真,以降低结构的地震反应
控制装置可以用来分散结构在动荷载作用下的能量,以减少结构的损伤,防止结构的破坏。磁流变(MR)阻尼器是近年来备受关注的半主动控制装置,具有机械简单、动态范围大、温度工作范围大、功耗要求低等优点。在目前的研究工作中,使用Matlab和Simulink作为计算工具对具有磁流变阻尼器(mrd)的结构控制系统进行建模和仿真。首先,通过mrd的代表性数学模型的控制微分方程的simulink方框图进行建模。接下来,执行一系列模拟,以复制实验结果并能够验证建模步骤。最后,将mrd与半主动控制算法和理想的十自由度结构集成在一起。主要的预期结果是减少地震反应(反应历史、漂移、剪力和倾覆力矩)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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16 weeks
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