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Framework for a performance-based analysis of fires following earthquakes

机译:基于性能的地震后火灾分析框架

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Most current structural fire codes focus on achieving prescribed fire ratings, which are based on standard fire tests with minor relevance to what is required for fire safety. These prescriptive design approaches do not provide sufficient information regarding the performance of structural members or systems under elevated temperatures. Furthermore, the limited structural design provisions provide no indication of the level of reliability of structures since comprehensive treatment of the uncertainties associated with the hazard is not considered. It is therefore imperative to move towards performance-based engineering not only to quantify structural reliability for given performance objectives but also to ensure more economic and safe design. This paper provides details on the development of a new analysis framework for probabilistic performance-based analysis of a fire following an earthquake. The framework is then utilized to develop fragilities of steel structural members and systems subjected to cascading hazards of earthquake and fire while considering buckling of columns as the damage limit state. Uncertainties associated with fire hazard, passive fire protection, gravity load, and earthquake intensity are accounted for in the framework. The proposed performance-based approach for the analysis of a fire following an earthquake can be considered an extension of the Pacific Earthquake Engineering Research (PEER) performance-based earthquake engineering framework and used by engineers to assess structural performance under the multiple hazards.
机译:当前,大多数结构防火规范都着眼于达到规定的防火等级,这些防火等级是基于与防火安全要求不相关的标准防火测试得出的。这些规定性的设计方法不能提供有关高温下结构构件或系统性能的足够信息。此外,有限的结构设计规定没有提供结构可靠性水平的指示,因为未考虑与危险相关的不确定性的综合处理。因此,必须进行基于性能的工程设计,不仅要量化给定性能目标的结构可靠性,还要确保更经济,更安全的设计。本文提供了有关开发新的分析框架的详细信息,该框架用于基于概率性能的地震后火灾分析。然后,该框架可用于开发承受地震和火灾的级联危害的钢结构构件和系统的脆弱性,同时将柱的屈曲视为破坏极限状态。该框架考虑了与火灾隐患,被动防火,重力载荷和地震烈度相关的不确定性。提议的基于性能的方法来分析地震后的火灾可以被认为是太平洋地震工程研究(PEER)基于性能的地震工程框架的扩展,并被工程师用来评估多种灾害下的结构性能。

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