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Seismic vulnerability assessment of multi-degree-of-freedom systems based on total input energy and momentary input energy responses

机译:基于总输入能量和瞬时输入能量响应的多自由度系统的地震易损性评估

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摘要

In energy-based seismic evaluation and design, input energy as a seismic demand parameter and hysteretic energy are two important factors. Previous studies for seismic assessment and design based on energy approach have been generally limited to single-degree-of-freedom (SDOF) structures. The purpose of this paper is to find a suitable energy-based parameter for estimation of the damaging potential of ground motion in reinforced concrete frames of multi-degree-of-freedom (MDOF) systems. In this regard, 40 common reinforced concrete frames subjected to four different earthquakes have been analyzed. The results indicate that maximum momentary input energy is a more appropriate parameter than maximum total input energy for estimation of structural damage in short-duration earthquakes or those in which the major damage to structures happens within a short duration of ground motion. In addition, in earthquakes with a wide frequency range, the predominant period of ground motion in Fourier spectrum is shown to be the period corresponding to maximum input energy.
机译:在基于能量的地震评估和设计中,作为地震需求参数的输入能量和滞后能量是两个重要因素。以前基于能量方法进行地震评估和设计的研究通常仅限于单自由度(SDOF)结构。本文的目的是找到一个合适的基于能量的参数,以估计多自由度(MDOF)系统中钢筋混凝土框架中地震动的破坏潜力。在这方面,已经对40种常见的钢筋混凝土框架进行了四次不同的地震分析。结果表明,最大瞬时输入能量是比最大总输入能量更合适的参数,用于估算短期地震或在短时间地震中对结构造成重大破坏的结构破坏。另外,在频率范围较宽的地震中,傅立叶频谱中的地震动的主要周期显示为对应于最大输入能量的周期。

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