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Energy flow in progressive collapse of steel framed buildings

机译:钢框架建筑物逐渐倒塌时的能量流

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This paper provides the methodology for an energy-based progressive collapse assessment of multistory buildings. The progressive collapse of steel-framed buildings is analyzed based on an energy flow perspective. The energy based assessment of structural members is introduced, and compared with conventional force and deformation approaches discussed in the literature. Consecutively, the advantages of energy flow analysis in interpretation of extreme dynamic events are discussed. On the global level, a building can arrest the collapse, and achieve its stable configuration only if the kinetic energy is completely dissipated by the structure. Otherwise, the remaining kinetic energy will cause the collapse to continue. In a conventional building, kinetic energy is dissipated within structural members by the transformation into their deformation energy. Structural members can dissipate finite amounts of energy before becoming unstable. The column deformation energy was shown to be a better stability indicator under dynamic loading than the maximum dynamic force. The energy flow analysis is illustrated with a collapse assessment of a typical steel building.
机译:本文为多层建筑物的基于能量的渐进倒塌评估提供了方法。基于能量流的角度分析了钢结构建筑的逐步倒塌。介绍了基于能量的结构构件评估,并将其与文献中讨论的常规力和变形方法进行了比较。连续地,讨论了能量流分析在解释极端动态事件中的优势。在全球范围内,仅当动能完全被结构消散时,建筑物才能阻止倒塌并获得稳定的配置。否则,剩余的动能将导致坍塌继续。在传统的建筑物中,动能通过转化为变形能而耗散在结构构件内。结构构件在变得不稳定之前可以耗散有限量的能量。与最大动态力相比,动态载荷下的柱形变形能量是更好的稳定性指标。通过对典型钢结构建筑物的倒塌评估来说明能量流分析。

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