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Comparison of progressive collapse resistance capacities of steel ordinary and intermediate moment frames considering different connection details

机译:考虑不同连接细节的钢普通和中间时刻框架渐进塌陷能力的比较

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In this study, the progressive collapse resistance capacities of steel ordinary moment frames (OMFs) and intermediate moment frames (IMFs) with different connection details were numerically evaluated and compared. Three prototype buildings with typical configurations were designed in accordance with Korean building code (KBC). OMFs with welded unreinforced flange-bolted web (WUF-B) connections, OMFs with reduced beam section (RBS) ones, and IMFs with RBS ones were deployed for each building. Beams, columns, connections, and composite slabs were modeled using reduced models of 1-D and 2-D elements for efficient analyses. With respect to progressive collapse analyses, 1and 2-column removal scenarios were firstly performed through non-linear static analyses and then the numerical results were employed for the energy-based approximate analyses, resulting in load-displacement relationships reflecting dynamic effects due to the sudden column removals without highly time-consuming dynamic analyses. The comparison of progressive collapse resistance capacities was based on the U.S. general services administration (GSA), structural robustness index, and sensitivity index. As a result, all the three buildings met the chord rotation criterion of GSA and indicated enough resistance capacities in the 1-column removal scenario, but not in the 2-column removal scenario. For the OMFs, it was found that the RBS connection showed better resistance capacity than the WUF-B one. Furthermore, the OMFs were superior to the IMFs from the standpoint of resistance capacity. The results can be utilized to predict progressive collapse resistance capacities of similar types of structures.
机译:在该研究中,使用不同连接细节的钢普通时刻框架(OMF)和中间力矩框架(IMF)的渐进塌陷容量在数值上进行了数值评估和比较。具有典型配置的三座具有典型配置的三个原型建筑物根据韩国建筑码(KBC)设计。每个建筑都部署了带有焊接未粘合的法兰螺栓网(WUF-B)连接,带有减小的光束部分(RB)的OMF,以及带有RBS的IMF。利用1-D和2-D元素的减少模型建模梁,列,连接和复合板,以便有效分析。关于渐进崩溃分析,首先通过非线性静态分析首先进行1和2列去除场景,然后采用数值结果用于基于能量的近似分析,导致负荷 - 位移关系反映由于突然造成的动态效应列除去,而不会产生高度耗时的动态分析。渐进抗塌陷能力的比较基于美国一般服务管理(GSA),结构鲁棒指数和敏感性指数。因此,所有三个建筑都符合GSA的弦旋转标准,并在1列去除场景中表明了足够的电阻容量,但不在2列移除场景中。对于OMFS,发现RBS连接显示比WUF-B更好的阻力。此外,从阻力容量的观点来看,OMFS优于IMF。结果可用于预测相似类型结构的逐步塌陷能力。

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