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Improving the accuracy of progressive collapse risk assessment: Efficiency and contribution of supplementary progressive collapse resisting mechanisms

机译:提高渐进性崩溃风险评估的准确性:补充性渐进性崩溃抵抗机制的效率和贡献

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This paper investigates the structural response of RC framed buildings subjected to accidental/abnormal loads (explosion, impact and other hazards). Several existing national or international design codes (GSA 2003, DoD 2009, 2013) provide limited guidelines for the assessment of progressive collapse resistance in the design, process and the alternate load path method is widely used in current structural design codes. Since the progressive collapse is a dynamic and nonlinear event the structural components undergo nonlinear deformations before failure. In this study the nonlinear procedures (NSA and NDA) are applied. These types of analyses imply significant computational power and time costs. In addition, the reinforced concrete framed structures are able to develop multiple post flexural resisting mechanisms. These are currently not considered in the structural analyses performed according to GSA2003 and DoD2009 provisions. Thus, the first objective of this paper is to identify by numerical computation the presence and contributions of such supplementary resisting mechanisms. A further objective is to determine what will be the influence on the accuracy of results when, starting from the original structure, the number of its bays is successively reduced; also, what is the efficiency in saving run-time costs when such simplified models are considered in the analysis. The study reveals that in order to resist abnormal loads, RC structures are able to develop supplementary resisting mechanisms beyond the flexural behavior and respectively, important time savings are obtained without significantly affecting the results accuracy. (C) 2016 Civil-Comp Ltd and Elsevier Ltd. All rights reserved.
机译:本文研究了承受意外/异常载荷(爆炸,撞击和其他危险)的钢筋混凝土框架房屋的结构响应。几个现有的国家或国际设计规范(GSA 2003,DoD 2009、2013)为评估设计,过程中的渐进抗倒塌性提供了有限的指导原则,而备用荷载路径方法已在当前的结构设计规范中广泛使用。由于渐进倒塌是一个动态的非线性事件,因此结构部件在破坏前会经历非线性变形。在这项研究中,应用了非线性程序(NSA和NDA)。这些类型的分析意味着大量的计算能力和时间成本。另外,钢筋混凝土框架结构能够发展多种抗后弯曲的机制。目前,根据GSA2003和DoD2009规定执行的结构分析中未考虑这些因素。因此,本文的首要目标是通过数值计算来识别这种辅助抵抗机制的存在和贡献。另一个目标是确定从原始结构开始依次减少其间格数量时,对结果准确性的影响。同样,在分析中考虑这种简化模型时,节省运行时间成本的效率如何?研究表明,为了抵抗异常载荷,RC结构能够在弯曲行为之外发展出补充的抵抗机制,并且在不显着影响结果准确性的情况下节省了大量时间。 (C)2016 Civil-Comp Ltd和Elsevier Ltd.保留所有权利。

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