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Stability degradation and redundancy in damaged structures

机译:受损结构的稳定性下降和冗余

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摘要

The objective of this paper is to assess the promise of a novel tool for structural safety decision-making in severe unforeseen hazards. A straightforward measure is put forward for measuring the intensity of unforeseen hazards: the number of connected members "removed" from a structure in a brittle fashion. The tool selected for assessing this severe demand is the reduction in the buckling load capacity (stability) of the structure under service loads. Two examples of planar steel frames quantitatively demonstrate how the stability of structures degrades under this severe damage. Degradation of the buckling load, as members are removed, provides an efficient and unique tool for assessing fragility against unforeseen hazards in buildings. Further, a coarse, but efficient measure of progressive collapse is provided by utilizing the condition number of the stiffness matrix for the damaged structure. Comparison of a moment frame with and without cross-bracing indicates the beneficial role of redundancy as damage increases. Challenges remain, particularly in determining reasonable distributions for the intensity, and improving the computational efficiency of the analysis. A framework for incorporating stability degradation analysis into decision-making, similar to that developed in seismic performance-based design, is provided.
机译:本文的目的是评估在重大不可预见危险中进行结构安全决策的新型工具的前景。提出了一种直接的措施来测量不可预见的危险的强度:以脆性方式从结构“移出”的连接构件的数量。用来评估这种严峻需求的工具是在使用载荷下降低结构的屈曲载荷能力(稳定性)。平面钢框架的两个例子定量地说明了在这种严重破坏下结构的稳定性如何降低。当移除构件时,屈曲载荷的下降提供了一种有效且独特的工具,用于评估建筑物中不可预见的危害的脆弱性。此外,通过利用损坏结构的刚度矩阵的条件数,可以提供一种粗略但有效的渐进塌陷测量方法。带有和不带有交叉支撑的力矩框架的比较表明,随着损伤的增加,冗余的有益作用。挑战仍然存在,尤其是在确定强度的合理分布以及提高分析的计算效率方面。提供了将稳定性退化分析纳入决策的框架,类似于基于地震性能的设计中开发的框架。

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