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Optimal seismic upgrading of a reinforced concrete school building with metal-based devices using an efficient multi-criteria decision-making method

机译:利用高效多标准决策方法最佳地震升级金属钢筋混凝土学校建筑

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In the paper, the seismic retrofitting of an existing reinforced concrete school building located in the district of Naples has been examined. The school, which was designed to sustain gravity load only, is composed of seven constructions separated with seismic joints. One of these constructions has been retrofitted with different intervention techniques, namely reinforced concrete walls, steel concentric, eccentric and buckling restrained braces and steel shear panels, whose non-linear behaviour under seismic actions in terms of performance point detection have been evaluated and compared using Capacity Spectrum Method. Finally, the choice of the best intervention technique from economic, structural and environmental point of view has been done utilising an efficient multi-criteria decision-making (MCDM) method, the so-called TOPSIS method. From the performed analyses it was found that buckling restrained braces provide optimal solution for the seismic upgrading of the examined reinforced concrete school building.
机译:本文审查了位于那不勒斯地区的现有钢筋混凝土学校建筑的地震改装。旨在维持重力载荷的学校由七种结构与地震关节分开的结构组成。这些结构之一已经用不同的干预技术改装,即钢筋混凝土墙,钢同心,偏心和屈曲束缚的括号和钢剪切面板,其在性能点检测方面的地震动作下的非线性行为已经评估并使用容量谱法。最后,利用了高效的多标准决策(MCDM)方法,所谓的TOPSIS方法选择了从经济,结构和环境的观点中获得最佳干预技术的选择。从表演的分析中发现,屈曲受限制的括号为所检查的钢筋混凝土学校建筑的地震升级提供最佳解决方案。

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