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Evaluation of progressive collapse alternate load path analyses in designing for blast resistance of steel columns

机译:渐进倒塌交替荷载路径分析在钢柱抗爆设计中的评估

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摘要

The alternate load path method is a convenient, "threat-independent" method used in progressive collapse analysis and design. Because no actual loadings are considered in this method, the resistance provided by the alternate load path method for specific extreme events is not well quantified. However, such quantification allows for an understanding of what real scenarios can be efficiently represented by alternate load path analyses. As blast loading is one of the abnormal loading events typically motivating an alternate path analysis, this load type is selected for evaluation in the present work. In order to find the blast threat that is representative of the alternate load path method in steel-framed buildings, finite element analyses of steel columns being subjected to blast loads were analyzed in the program LS-Dyna. Prior to this, sensitivity and validation studies were also completed, which are described herein. The results of the column analyses show that failure is governed by a stability-based deflection criterion. Conclusions regarding the charge sizes that the alternate load path method may be considered to be representative of, as well as the influence of column spacing, size, and end fixity on these results are given.
机译:替代荷载路径方法是一种方便的,“独立于威胁”的方法,用于逐步倒塌分析和设计。由于在此方法中未考虑实际载荷,因此无法很好地量化由备用载荷路径方法提供的针对特定极端事件的阻力。但是,这样的量化允许您了解可以通过备用负载路径分析有效地表示哪些实际方案。由于爆炸载荷是通常会引起备用路径分析的异常载荷事件之一,因此在本工作中选择此载荷类型进行评估。为了在钢结构建筑物中找到代表替代荷载路径方法的爆炸威胁,在程序LS-Dyna中对承受爆炸荷载的钢柱进行了有限元分析。在此之前,还完成了敏感性和验证研究,在此进行介绍。柱分析的结果表明,破坏是由基于稳定性的挠度准则控制的。给出了关于可以用替代负载路径方法代表的装料量的结论,以及柱间距,尺寸和端固定度对这些结果的影响。

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