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Evaluation of Progressive Collapse Resistance of Steel Moment Frames Designed with Different Connection Details Using Energy-Based Approximate Analysis

机译:基于能量的近似分析评估不同连接细节设计的钢制弯矩框架的抗连续倒塌性能

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This study evaluates the progressive collapse resistance performance of steel moment frames, individually designed with different connection details. Welded unreinforced flange-bolted web (WUF-B) and reduced beam section (RBS) connections are selected and applied to ordinary moment frames designed as per the Korean Building Code (KBC) 2016. The 3-D steel frame systems are modeled using reduced models of 1-D and 2-D elements for beams, columns, connections, and composite slabs. Comparisons between the analyzed results of the reduced models and the experimental results are presented to verify the applicability of the models. Nonlinear static analyses of two prototype buildings with different connection details are conducted using the reduced models, and an energy-based approximate analysis is used to account for the dynamic effects associated with sudden column loss. The assessment on the structures was based on structural robustness and sensitivity methods using the alternative path method suggested in General Services Administration (GSA) 2003, in which column removal scenarios were performed and the bearing capacity of the initial structure with an undamaged column was calculated under gravity loads. According to the analytical results, the two prototype buildings satisfied the chord rotation criterion of GSA 2003. These results were expected since the composite slabs designed to withstand more than 3.3 times the required capacity had a significant effect on the stiffness of the entire structure. The RBS connections were found to be 14% less sensitive to progressive collapse compared to the WUF-B ones.
机译:这项研究评估了单独设计有不同连接细节的钢制矩型框架的渐进抗倒塌性能。选择焊接的无筋法兰锚固腹板(WUF-B)和减小的梁截面(RBS)连接,并将其应用于根据《韩国建筑规范》(KBC)2016设计的普通弯矩框架。3-D钢框架系统的模型使用梁,柱,连接和复合板的一维和二维单元的模型。对简化模型的分析结果与实验结果进行了比较,以验证模型的适用性。使用简化模型对具有不同连接细节的两个原型建筑物进行了非线性静力分析,并使用了基于能量的近似分析来解决与突然的立柱损失相关的动态影响。对结构的评估是基于结构稳健性和敏感性方法,使用的是通用服务管理局(GSA)2003建议的替代路径方法,其中执行了柱拆除方案,并根据以下公式计算了未损坏柱的初始结构的承载力:重力载荷。根据分析结果,两座原型建筑物均符合GSA 2003的弦旋转标准。由于承受了所需承载力的3.3倍以上的复合板对整个结构的刚度具有显着影响,因此可以预期这些结果。与WUF-B相比,发现RBS连接对进行性倒塌的敏感度低14%。

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