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Modal strength reduction factors for seismic design of plane steel frames

机译:平面钢框架抗震设计的模态强度折减系数

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摘要

A new method for the seismic design of plane steel moment resisting frames is developed. This method determines the design base shear of a plane steel frame through modal synthesis and spectrum analysis utilizing different values of the strength reduction (behavior) factor for the modes considered instead of a single common value of that factor for all these modes as it is the case with current seismic codes. The values of these modal strength reduction factors are derived with the aid of a) design equations that provide equivalent linear modal damping ratios for steel moment resisting frames as functions of period, allowable interstorey drift and damage levels and b) the damping reduction factor that modifies elastic acceleration spectra for high levels of damping. Thus, a new performance-based design method is established. The direct dependence of the modal strength reduction factor on desired interstorey drift and damage levels permits the control of deformations without their determination and secures that deformations will not exceed these levels. By means of certain seismic design examples presented herein, it is demonstrated that the use of different values for the strength reduction factor per mode instead of a single common value for all modes, leads to more accurate results in a more rational way than the codebased ones.
机译:提出了一种抗弯钢框架抗震设计的新方法。该方法通过模态综合和频谱分析,通过对所考虑的模态使用不同的强度降低(行为)因子值,而不是对所有这些模态使用该因子的单个公共值,通过模态综合和频谱分析来确定平面钢框架的设计基础剪力。当前地震代码的情况。这些模态强度折减系数的值借助于a)设计方程得出,该方程式为钢制抗弯框架提供了等效的线性模态阻尼比,作为周期,可允许的层间漂移和破坏水平的函数,以及b)修正了的阻尼折减系数高阻尼水平的弹性加速度谱。因此,建立了一种新的基于性能的设计方法。模态强度降低因子直接依赖于所需的层间漂移和破坏水平,可以控制变形而无需确定变形,并确保变形不会超过这些水平。通过此处介绍的某些抗震设计示例,证明了对每个模式使用不同的强度降低因子值,而不是对所有模式使用单个公共值,将导致比基于代码的方法更准确的结果。

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