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Equivalent viscous damping for steel eccentrically braced frame structures with buckling restraint braces

机译:钢偏心支撑框架结构的等效粘性阻尼屈曲围裙

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Steel eccentrically braced frame systems (EBF) with buckling restraint braces are extensively used as a lateral load resisting system due to their high-energy dissipation characterized by the inelastic shear deformation of the short links. In performance-based seismic design of such structural systems using the direct displacement-based design procedure (DDBD), equivalent viscous damping (EVD) coefficient is used to represent the energy dissipation capacity which has not been developed particularly for this structural system yet even though expressions to calculate EVD coefficient have been already developed for other major lateral load systems supporting DDBD procedure. Therefore, in this study, a new EVD expression was developed incorporating 25 predetermined single degree of freedom (SDOF) eccentrically braced frame (EBF) systems which were selected by varying the length and the section geometry of the link considering them as the dominant parameters that affect the energy dissipation of the system. Firstly, EVD coefficients were calculated using Jacobsen's area-based approach for quasi-static loading and they were corrected by considering the effects of earthquake characteristics using 13 spectrum compatible earthquake records. Finally, a new equation to calculate the equivalent viscous damping coefficient for eccentrically braced frame systems was formulated as a function of the ductility of equivalent SDOF system to the multi-degree of freedom (MDOF) systems.
机译:由于它们的高能耗散,具有屈曲约束括号的钢偏心支撑架系统(EBF)被广泛地用作横向载荷系统,其特征在于短链路的无弹性剪切变形。在使用基于直接位移的设计过程(DDBD)的这种结构系统的基于性能的地震设计中,使用等效粘性阻尼(EVD)系数来表示尚未为该结构系统开发的能量耗散能力,但即使用于计算EVD系数的表达已经为支持DDBD程序的其他主要横向负载系统开发。因此,在本研究中,通过改变将链路的长度和截面几何形状改变为主要参数来结合出来的25预定单一自由度(SDOF)偏心支撑框架(EBF)系统来开发新的EVD表达。影响系统的能量耗散。首先,使用Jacobsen的基于面积的方法来计算EVD系数用于准静态负荷,并通过考虑使用13个光谱兼容的地震记录来校正地震特性的影响。最后,作为计算偏心支撑框架系统的等效粘性粘性系数的新方程式被配制为与当量SDOF系统到多度自由度(MDOF)系统的延展性的函数的函数。

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