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A Study on Dissipation of Cumulative Hysteretic Energy in Reinforced Concrete Frame Structures

机译:钢筋混凝土框架结构累积滞回能耗散研究

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Earthquake input energy and structural energy dissipation are key indicators to assess the seismic performance of structures. To study the rules of distribution of hysteretic energy within structures, a 6-storey regular reinforced concrete frame structure model is analyzed through elasto-plastic time-history dynamic analysis using the El Centra and Northridge accelerograms. Based on the comparison between numerical results for the earthquake input energy and structural hysteretic energy under the minor, moderate and major earthquakes of Grade 8 and 9, the distribution of the ratio of the storey hysteretic energy to the total hysteretic energy through the height was further studied. It shows that the computed results corresponding to the two earthquake records are in good agreement under different ground motion severity. And the percentage of structural hysteretic energy to input energy is basically stable. The distribution pattern of storey hysteretic energy through the height is that the value of the upper stories is smaller than the value of the lower stories. And the ground motion severity has a minor influence on the distribution pattern when the plasticity of structure develops more sufficiently.
机译:地震投入能量和结构能量耗散是评估结构抗震性能的关键指标。为了研究结构内滞回能量的分配规则,一个6层的常规钢筋混凝土框架结构模型是通过弹塑性时程动态分析使用EL CENTRA和北岭accelerograms进行分析。基于在8和9级和9年级的次要地震下的地震输入能量和结构滞后能量的数值结果的比较,岩石滞后能量与高度的总滞后能量的分布的分布研究过。它表明,与两个地震记录相对应的计算结果在不同地面运动严重程度下具有良好的一致性。和输入能量的结构滞后能量的百分比基本稳定。通过高度的楼层滞后能量的分布模式是上层故事的值小于下层故事的值。当结构的可塑性发展更充分地发展时,地面运动严重程度对分布模式具有微小的影响。

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