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Dimensional Response Analysis of Multistory Regular Steel MRF Subjected to Pulselike Earthquake Ground Motions

机译:多层规则钢MRF在类似脉冲地震地震动作用下的尺寸响应分析

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摘要

An alternative and efficient procedure to estimate the maximum inelastic roof displacement and the maximum inelastic interstory drift ratio along the height of regular multistory steel MRF subjected to pulselike ground motions is proposed. The method and the normalized response quantities emerge from formal dimensional analysis which makes use of the distinct time scale and length scale that characterize the most energetic component of the ground shaking. Such time and length scales emerge naturally from the distinguishable pulses which dominate a wide class of strong earthquake records and can be formally extracted with validated mathematical models published in literature. The proposed method is liberated from the maximum displacement of the elastic single-degree-of-freedom structure since the self-similar master curve which results from dimensional analysis involves solely the shear strength and yield roof displacement of the inelastic multidegree-of-freedom system in association with the duration and acceleration amplitude of the dominant pulse. The estimated inelastic response quantities are in superior agreement with the results from nonlinear time-history analysis than any inelastic response estimation published previously.
机译:提出了另一种有效的方法来估算沿规则多层钢MRF高度沿脉动地面运动的最大非弹性顶板位移和最大非弹性层间位移比。该方法和归一化的响应量来自形式尺寸分析,形式尺寸分析利用了不同的时间尺度和长度尺度,这些时间尺度和长度尺度表征了地面震动的最高能量成分。这样的时间和长度刻度自然是由可分辨的脉冲产生的,这些脉冲支配着广泛的强地震记录,并且可以用文献中发表的经过验证的数学模型来正式提取。该方法从弹性单自由度结构的最大位移中解放出来,因为尺寸分析产生的自相似主曲线仅涉及非弹性多自由度系统的抗剪强度和屈服顶板位移与主导脉冲的持续时间和加速度幅度有关。估计的非弹性响应量与非线性时程分析的结果比以前发布的任何非弹性响应估计都更加吻合。

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