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Seismic response of controlled structures with active multiple tuned mass dampers

机译:具有主动多重调谐质量阻尼器的受控结构的地震响应

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Active multiple tuned mass dampers (referred to as AMTMD), which consist of several active tuned mass dampers (ATMDs) with identical stiffness and damping coefficients but varying mass and control force, have recently been proposed to suppress undesirable oscillations of structures under ground acceleration. It has been shown that the AMTMD can remarkably improve the performance of multiple tuned mass dampers (MTMDs) and is also more effective in reducing structure oscillation than single ATMDs. Notwithstanding this, good performance of AMTMD (including a single ATMD illustrated from frequency-domain analysis) may not necessarily translate into a good seismic reduction behavior in the time-domain. To investigate these phenomena, a three-story steel structure model controlled by AMTMD with three ATMDs was implemented in SIMULINK and subjected to several historical earthquakes. Likewise, the structure under consideration was assumed to have uncertainty of stiffness, such as ±15% of its initial stiffness, in the numerical simulations. The optimum design parameters of the AMTMD were obtained in the frequency-domain by implementing the minimization of the minimum values of the maximum dynamic magnification factors (DMF) of general structures with AMTMD. For comparison purposes, response analysis of the same structure with a single ATMD was also performed. The numerical analysis and comparison show that the AMTMD generally renders better effectiveness when compared with a single ATMD for structures subjected to historical earthquakes. In particular, the AMTMD can improve the effectiveness of a single ATMD for a structure with an uncertainty of stiffness of ±15% of its initial stiffness.
机译:主动多重调谐质量阻尼器(称为AMTMD)是由几个主动调谐质量阻尼器(ATMD)组成,这些阻尼器具有相同的刚度和阻尼系数,但质量和控制力却不同,最近被提出来抑制结构在地面加速度下的不良振动。已经表明,AMTMD可以显着改善多重调谐质量阻尼器(MTMD)的性能,并且在减少结构振动方面比单个ATMD更有效。尽管如此,AMMTD的良好性能(包括从频域分析中说明的单个ATMD)可能不一定会转化为时域的良好减震性能。为了研究这些现象,在SIMULINK中实施了一个由AMTMD控制,具有三个ATMD的三层钢结构模型,该模型遭受了几次历史地震。同样,在数值模拟中,假设所考虑的结构具有刚度不确定性,例如其初始刚度的±15%。通过对具有AMTMD的一般结构的最大动态放大系数(DMF)的最小值进行最小化,可以在频域中获得AMTMD的最佳设计参数。为了进行比较,还使用单个ATMD对相同结构进行了响应分析。数值分析和比较表明,与遭受历史地震的结构的单个ATMD相比,AMTMD通常具有更好的有效性。特别是,AMMTD可以提高单个ATMD对于刚度不确定度为其初始刚度的±15%的结构的有效性。

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