A rapid damage assessment framework for regular RC frame structures under external explosions

IF 3.9 2区 工程技术 Q1 ENGINEERING, CIVIL
Ruiran Li, Jun Yu, Xingde Zhou
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Abstract

Local damage of the structural members and even progressive collapse of structures occurred in terrorist or accidental explosions, but there are few unified frameworks of integrating the member damage into the structural damage for rapid assessment against blast loads. To fill this gap, a framework is proposed for engineering practice to rapidly assess damage levels of regular reinforced concrete (RC) frame structures under external explosions, in which the structural damage level is eventually determined with only two inputs: scaled distance and structural redundancy. A regular 5-story RC frame structure subjected to external explosions is adopted as an example to illustrate the proposed framework. Firstly, damage indexes of structural members are formulated under far-field explosions or close-in explosions, and the structural damage index is further derived through the weighted integration of the damage indexes of structural members. Subsequently, the damage modes and collapse processes of the designed RC frame structure are simulated under different explosion scenarios, and the energy-based damage indexes for assessing structures against blast loads are developed and validated. Through numerical results of 23 case studies, the structural damage assessment formula as a function of scaled distance and structural redundancy is derived through regress analysis, and on the other hand, two key threshold values of the energy-based damage indexes are introduced to classify the structural damage levels (minor, moderate and severe levels). Finally, the structural damage index is correlated to the energy-based damage index through curve-fitting to determine the corresponding threshold values of structural damage index as well, and the effectiveness of the damage assessment framework is further validated. The results show that the proposed damage assessment framework can rapidly and accurately assess the damage levels of the regular RC frame structures under external explosions, and the deviation between the predicted damage indexes and the numerical results are 4.11 %–9.52 %.
外部爆炸下常规 RC 框架结构的快速损坏评估框架
在恐怖爆炸或意外爆炸中,结构构件的局部损坏甚至结构的逐渐倒塌时有发生,但很少有统一的框架将构件损坏纳入结构损坏中,以快速评估爆炸荷载。为了填补这一空白,本文提出了一个用于工程实践的框架,以快速评估外部爆炸下普通钢筋混凝土(RC)框架结构的损坏程度,其中结构损坏程度最终只需两个输入即可确定:缩放距离和结构冗余度。本文以一个遭受外部爆炸的普通 5 层 RC 框架结构为例,说明所提出的框架。首先,制定结构构件在远场爆炸或近场爆炸下的损伤指数,并通过结构构件损伤指数的加权积分进一步得出结构损伤指数。随后,模拟了所设计的 RC 框架结构在不同爆炸情况下的损坏模式和倒塌过程,并开发和验证了用于评估结构抗爆荷载的基于能量的损坏指数。通过 23 个案例研究的数值结果,一方面通过回归分析得出了结构损伤评估公式与比例距离和结构冗余度的函数关系,另一方面引入了基于能量的损伤指数的两个关键阈值来划分结构损伤等级(轻度、中度和重度)。最后,通过曲线拟合将结构损伤指数与基于能量的损伤指数相关联,确定结构损伤指数的相应阈值,进一步验证损伤评估框架的有效性。结果表明,所提出的损伤评估框架可以快速、准确地评估常规 RC 框架结构在外部爆炸下的损伤程度,预测的损伤指数与数值结果的偏差为 4.11 %-9.52 %。
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来源期刊
Structures
Structures Engineering-Architecture
CiteScore
5.70
自引率
17.10%
发文量
1187
期刊介绍: Structures aims to publish internationally-leading research across the full breadth of structural engineering. Papers for Structures are particularly welcome in which high-quality research will benefit from wide readership of academics and practitioners such that not only high citation rates but also tangible industrial-related pathways to impact are achieved.
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