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Direct displacement-based design of special concentrically-braced frames in near-fault regions

机译:基于直接位移的近断层特殊同心支撑框架设计

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摘要

The effect of near-fault earthquakes on the effective period of special concentrically-braced frames is studied in this paper. The effective period is one of the most important parameters in direct displacement-based design. Given the effective period, the design base shear of structure can be obtained. Since the braced frames have high stiffness, an appropriate category of near-fault earthquakes for structures with high stiffness is established in this paper and the relations are presented to determine the pulse period and peak ground velocity. Sixteen near-fault accelerograms are simulated by the proposed methodology and applied to 16 one-storey special concentrically-braced frames. The results show that the behaviour of frames subjected to earthquakes with magnitude < 6 is quite different from that of earthquakes with magnitude > 6. The effective period depends on pulse period, peak ground velocity, ductility and design displacement. Two expressions are suggested to determine the effective period of two types of special concentrically-braced frames (X-braced and Inverted V-braced frame) according to these parameters.
机译:研究了近断层地震对特殊同心支撑框架有效期的影响。有效期是基于直接位移的设计中最重要的参数之一。给定有效期,可以获得结构的设计基准剪力。由于支撑框架具有较高的刚度,本文为高刚度的结构建立了适当的近断层地震类别,并给出了确定脉冲周期和峰值地面速度的关系。通过所提出的方法对十六个近故障加速度计进行了仿真,并将其应用于16个一层的特殊同心支撑框架。结果表明,在小于6级的地震中,框架的行为与大于6级的地震的行为有很大不同。有效周期取决于脉冲周期,峰值地面速度,延性和设计位移。建议使用两个表达式来根据这些参数确定两种类型的特殊同心支撑框架(X支撑和反向V支撑框架)的有效期。

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