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Effects of Seismic and Progressive Collapse Designs on the Vulnerability of RC Frame Structures

机译:地震和逐渐塌陷设计对RC帧结构脆弱性的影响

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摘要

Buildings are exposed to multiple natural hazards over their service lives. Multihazard analysis and design of building structures has become a research hotspot worldwide. For these structures, earthquake and progressive collapse are two of the most commonly encountered hazards. However, little research has been conducted to examine the effects of the seismic and progressive collapse designs on the resistance of buildings against multiple hazards. In this study, a series of six-story reinforced concrete (RC) frames are considered, and their seismic and progressive collapse designs are performed independently according to the corresponding design codes. Fragility curves are used to assess the seismic and progressive collapse resistance. The interactions between the two designs are discussed by analyzing the fragility curves and the collapse modes. Results show that the progressive collapse design of the RC frame may lead to an undesirable failure mode (i.e.,strong-beam-weak-column) under earthquakes, which indicates that a seismic redesign is necessary subsequent to the progressive collapse design. Note that sequential use of different design codes for a structure may result in material waste yet a suboptimal structural performance. Therefore, a design method by individually considering different hazards is unsuitable for the multihazard prevention and mitigation of building structures. A comprehensive and integrated design method for multihazards is thus in great need. The outcome of this study will lay a foundation for future multihazard analysis and design of building structures. (C) 2016 American Society of Civil Engineers.
机译:建筑物接触到他们服务生活的多种自然危险。建筑物结构的多血清分析和设计已成为全球研究热点。对于这些结构,地震和渐进崩溃是最常见的危险中的两个。然而,已经进行了很少的研究,以研究地震和渐进塌陷设计对抗组织抵抗多重危害的影响。在这项研究中,考虑了一系列六层钢筋混凝土(RC)帧,并且根据相应的设计代码独立地执行它们的地震和渐进塌陷设计。脆性曲线用于评估地震和渐进式抗塌陷性。通过分析脆弱曲线和折叠模式来讨论两种设计之间的相互作用。结果表明,地震下,RC帧的逐步塌陷设计可能导致不希望的失效模式(即,强光束 - 弱柱),表明在渐进崩溃设计之后是必要的地震重新设计。注意,针对结构的不同设计代码的顺序使用可能导致材料废物但是次优结构性能。因此,通过单独考虑不同危险的设计方法是不适合多危险的预防和建筑结构减轻的影响。因此,多血淋淋的全面和集成的设计方法非常需要。本研究的结果将为未来的多血淋力分析和建筑结构设计奠定基础。 (c)2016年美国土木工程师协会。

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