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Parametric Study for Performance-Based Fire Design of US Prototype Composite Floor Systems

机译:美国原型复合地板系统基于性能的防火设计的参数研究

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摘要

Design requirements for passive fire protection of steel structures in the United States are primarily based on prescriptive approaches. Yet performance-based design has gained attention in recent years for its potential to unlock design solutions that are robust, cost effective, and applicable to complex architectural configurations. For example, prior research has shown that fire protection on selected secondary beam elements in composite floor systems is not necessary due to the development of membrane action in the concrete slab during fire. In addition, the evaluation of a structure's performance under realistic fire scenarios, required in a performance-based approach, is enabled by recent developments in advanced computational modeling. However, currently there are no systematic guidelines to determine the reliability of a performance-based fire engineering design. This study provides a comparative analysis of the fire performance of a floor system designed following prescriptive and performance-based approaches. The floor system is adopted from a prototype steel-concrete composite office building. Further, a parametric study is conducted to investigate the effects of several parameters on the thermal-mechanical response including the modeling approach, fire curves, applied gravity loads, and hazard scenarios. Performance is measured using survival time at the structural system level, but also with predefined thresholds in deflection and reinforcement bar temperature. The results demonstrate that the performance-based design is robust, and verification of safety is not dependent on a particular demand value or performance measure. Most importantly, the performance-based design shows resistance when subjected to natural fires with large percentage fractile of fire load as well as in multihazard post-blast fire situations. (c) 2019 American Society of Civil Engineers.
机译:在美国,钢结构被动防火的设计要求主要基于规定性方法。然而,近年来,基于性能的设计因其解锁强大,经济高效且适用于复杂架构配置的设计解决方案的潜力而备受关注。例如,先前的研究表明,由于火灾期间混凝土板中膜作用的发展,因此不需要对复合地板系统中选定的次梁单元进行防火。另外,基于性能的方法要求对现实火灾场景下的结构性能进行评估,这是通过高级计算模型的最新发展实现的。但是,目前尚没有系统的准则来确定基于性能的消防工程设计的可靠性。这项研究对地板系统的防火性能进行了比较分析,该地板系统是根据规范性和基于性能的方法设计的。楼板系统是从原型钢-混凝土复合办公楼中采用的。此外,进行了一项参数研究,以研究几个参数对热机械响应的影响,包括建模方法,火灾曲线,施加的重力载荷和危险情况。性能是使用结构系统级别的生存时间来衡量的,还可以使用挠曲和钢筋温度的预定义阈值来衡量。结果表明,基于性能的设计是可靠的,并且安全性验证不依赖于特定的需求值或性能度量。最重要的是,基于性能的设计在承受着很大比例的火荷载的自然火灾以及在多灾后爆炸火灾中表现出抵抗力。 (c)2019美国土木工程师学会。

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  • 来源
    《Journal of structural engineering》 |2019年第5期|04019030.1-04019030.15|共15页
  • 作者单位

    Univ Buffalo, Dept Civil Struct & Environm Engn, Ketter Hall, Buffalo, NY 14260 USA;

    Johns Hopkins Univ, Dept Civil Engn, Latrobe Hall, Baltimore, MD 21218 USA;

    Univ Buffalo, Dept Civil Struct & Environm Engn, Ketter Hall, Buffalo, NY 14260 USA;

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