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Optimal seismic retrofitted RC column distribution for an existing school building

机译:现有教学楼的抗震加固钢筋混凝土柱的最佳分配

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Seismic retrofit technology has been significantly developed to reduce building damage during earthquakes. However, earthquakes are unpredictable natural disasters that should be dealt with flexibly. Hence, the seismic retrofitting method should be independently studied. In this study, the minimum number and the location of seismic retrofitted reinforced concrete columns required for school buildings in service are derived through an optimization technique. A time-history dynamic analysis of the frame structure comprising columns and beams is conducted using a three-dimensional finite element model to obtain empirical results. The study subject is a school building, which is a three-story RC structure with non-seismic details consisting of 62 RC columns on each floor (i.e., a total of 186 columns). The optimization analysis showed that retrofitting only 60.2% of the columns could withstand a peak ground acceleration of 0.2 g applied at the shear critical regions at both column ends.
机译:地震改型技术已得到显着发展,可减少地震中的建筑物损坏。但是,地震是不可预测的自然灾害,应灵活应对。因此,应单独研究抗震加固方法。在这项研究中,通过优化技术得出了在役学校建筑所需的抗震加固钢筋混凝土柱的最小数量和位置。使用三维有限元模型对包含柱和梁的框架结构进行时程动态分析,以获取经验结果。研究对象是一栋教学楼,它是一栋三层的RC结构,具有非地震细节,每层由62根RC柱组成(共186根)。优化分析表明,仅对60.2%的色谱柱进行改造,可以承受在色谱柱两端的剪切临界区域施加的0.2 g峰值地面加速度。

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