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Direct Displacement-Based Seismic Retrofit of a 2D Concrete Frame Using Buckling Restrained Braces

机译:基于屈曲约束支撑的二维混凝土框架基于位移的直接抗震改造

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摘要

This study seeks to upgrade a five-story concrete frame building that had been seriously damaged in the 5.12 Wenchuan earthquake using direct displacement-based design (DDBD) method and buckling restrained braces (BRBs). DDBD is a state-of-the-art performance-based seismic design method suitable for multi-story concrete frame buildings. BRBs are newly emerged assembled structural elements with properties similar to metal dampers, which are compatible with DDBD. These concepts are integrated in this work to showcase the performance-oriented seismic retrofit, where BRB properties are quantitatively determined and allocated. The analyses were based on static and dynamic nonlinear procedures. It is shown that the proposed DDBD method is effective to make full use of the unique characteristics of the BRBs, so that the retrofit members can be designed and arranged in an optimal way to meet preset displacement objectives.
机译:本研究旨在使用直接位移法(DDBD)和屈曲约束支撑(BRB)来升级在5.12汶川地震中严重受损的五层混凝土框架建筑。 DDBD是基于性能的抗震设计方法,适用于多层混凝土框架建筑物。 BRB是新兴的组装结构元件,其性能类似于金属减震器,与DDBD兼容。这些概念被整合到这项工作中,以展示面向性能的地震改造,其中BRB属性是定量确定和分配的。分析基于静态和动态非线性程序。结果表明,所提出的DDBD方法有效地利用了BRB的独特特性,因此可以以最佳方式设计和布置改型构件,以满足预设的位移目标。

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