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首页> 外文期刊>Steel & Composite Structures: An International Journal >Evaluation of ground motion scaling methods on drift demands of energy-based plastic designed steel frames under near-fault pulse-type earthquakes
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Evaluation of ground motion scaling methods on drift demands of energy-based plastic designed steel frames under near-fault pulse-type earthquakes

机译:近端脉冲型地震下能源基塑料设计钢框架漂移需求的地基运动缩放方法评价

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摘要

In the present study, the effects of six different ground motion scaling methods on inelastic response of nonlinear steel moment frames (SMFs) are studied. The frames were designed using energy-based PBPD approach with the design concept using pre-selected target drift and yield mechanism as performance limit state. Two target spectrums are considered: maximum credible earthquake spectrum (NICE) and design response spectrum (DRS). In order to investigate the effects of ground motion scaling methods on the response of the structures, totally 3216 nonlinear models including three frames with 4, 8 and 16 stories are designed using PBPD approach and then they are subjected to ensembles of ground motions including 42 far-fault and 90 near-fault pulse-type records which were scaled using the six different scaling methods in accordance to the two aforementioned target spectrums. The distributions of maximum inter-story drift over the height of the structures are computed and compared. Finally, the efficiency and reliability of each ground motion scaling method to estimate the maximum nonlinear inter-story drift of special steel moment frames designed by energy-based PBPD approach are statistically investigated, and the most suitable scaling methods with the lowest dispersion for two groups of earthquake ground motions are introduced.
机译:在本研究中,研究了六种不同地面运动缩放方法对非线性钢时刻框架(SMF)的非弹性响应的影响。使用预选的目标漂移和屈服机制作为性能限制状态,使用基于能量的PBPD方法设计了设计概念。考虑了两个目标频谱:最大可信地震谱(漂亮)和设计响应谱(DRS)。为了研究地面运动缩放方法对结构的响应的影响,共3216个非线性模型,包括使用PBPD方法设计了三个具有4,8和16个故事的非线性模型,然后对它们进行地面运动的整合,包括42远 - 根据两个上述目标频谱使用六种不同的缩放方法进行缩放的缩放和90个接近故障脉冲型记录。计算并比较了结构高度的最大故事界限的分布。最后,每个地面运动缩放方法的效率和可靠性来估计由基于能量的PBPD方法设计的特殊钢力矩框架的最大非线性故事漂移在统计上研究,以及两组分散最低的最合适的缩放方法介绍了地震地面运动。

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