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MITIGATION OF BLAST LOAD RISK ON REINFORCED CONCRETE STRUCTURES CONSIDERING DIFFERENT DESIGN ALTERNATIVES

机译:考虑不同设计替代品的钢筋混凝土结构的爆炸负荷风险减轻

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摘要

The purpose of this study is to investigate a structure's response to blast loading when composite columns are used instead of conventional reinforced concrete (RC) cross sections and when a conventional structure is retrofitted with braces. The study includes conducting dynamic analyses on three different structures: a conventional reference RC structure, a modified structure utilizing composite columns, and a modified structure retrofitted with steel braces. The two modified structures were designed in order to investigate their performance when subjected to blast loading compared to the conventional design. During the dynamic analyses, the structures were exposed to simulated blast loads of multiple intensities using the finite-element modelling software, SeismoStruct. To evaluate their performance, the responses of the modified structures were analyzed and compared with the response of the conventional structure. It was concluded that both the structure with composite columns and the steel brace structure experienced less damage than the conventional model. The best performance was obtained through the steel brace structure.
机译:本研究的目的是研究使用复合柱代替传统的钢筋混凝土(RC)横截面,以及用括号改造的常规结构时,调查结构对鼓胀负荷的响应。该研究包括在三种不同结构上进行动态分析:传统的参考RC结构,利用复合柱的改进结构,以及用钢支撑改装的改进的结构。设计了两个改进的结构,以便在与传统设计相比对喷射载荷进行喷射时进行调查。在动态分析期间,使用有限元建模软件,SeisMostruct将结构暴露于多个强度的模拟高负荷。为了评估它们的性能,分析了改性结构的反应,并与常规结构的响应进行了比较。结论是,具有复合柱和钢支撑结构的结构损坏较小。通过钢支撑结构获得最佳性能。

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