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Prediction of hysteretic energy demands in steel frames using vector-valued IMs

机译:使用矢量值IM预测钢框架中的滞回能量需求

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摘要

It is well known the importance of considering hysteretic energy demands for the seismic assessment and design of structures. In such a way that it is necessary to establish new parameters of the earthquake ground motion potential able to predict energy demands in structures. In this paper, several alternative vector-valued ground motion intensity measures (IMs) are used to estimate hysteretic energy demands in steel framed buildings under long duration narrow-band ground motions. The vectors are based on the spectral acceleration at first mode of the structure Sa(T-1) as first component. As the second component, IMs related to peak, integral and spectral shape parameters are selected. The aim of the study is to provide new parameters or vector-valued ground motion intensities with the capacity of predicting energy demands in structures. It is concluded that spectral-shape-based vector-valued IMs have the best relation with hysteretic energy demands in steel frames subjected to narrow-band earthquake ground motions.
机译:众所周知,考虑磁滞能量需求对于地震评估和结构设计非常重要。以这种方式,有必要建立能够预测结构中能量需求的地震地震动势的新参数。在本文中,使用了几种替代的矢量值地面运动强度度量(IM)来估计钢框架建筑物在长时间窄带地面运动下的滞回能量需求。这些矢量基于结构Sa(T-1)作为第一分量的第一模式下的光谱加速度。作为第二部分,选择与峰,积分和光谱形状参数有关的IM。该研究的目的是提供具有预测结构能量需求能力的新参数或矢量值的地面运动强度。得出的结论是,基于频谱形状的矢量值IMs与承受窄带地震地震动的钢框架中的滞回能量需求具有最佳关系。

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