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首页> 外文期刊>Journal of Constructional Steel Research >Recommendations for performance-based fire design of composite steel buildings using computational analysis
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Recommendations for performance-based fire design of composite steel buildings using computational analysis

机译:基于性能的钢制建筑物的建议使用计算分析

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Adoption of performance-based approaches in structural fire engineering is now largely recognized as having the potential to deliver benefits in terms of safety, resilience, sustainability and cost for the built environment. However, there is no systematic design guidelines for defining performance objectives, design fire scenarios, and methods of analysis. This paper focuses on steel framed buildings with composite floor slabs and provides an in-depth analysis of the structure under fire using performance-based fire engineering supported by computational modeling. First, a set of performance objectives and associated fire scenarios are defined. The scenarios include single- and multi-compartment fires as well as fire as a secondary event following a column loss. Then, response of the structure and effects of design changes are studied using different modeling approaches. Single slab, single slab with restraint, and full building models are investigated to understand the influence of continuity in the boundary conditions notably on the development of tensile membrane action. The full building model exhibited the most favorable behavior, while the single panel model without horizontal restraint was the most conservative. Best practices for computational modeling of a steel framed building under fire are discussed and recommendations are provided. The paper demonstrates an iterative design procedure, where systematic design changes are introduced to address the observed failure modes. It is shown that performance-based fire design can harness advanced computational models to examine the fire-structure behavior for multiple design alternatives and hazard scenarios. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在结构防火工程中采用基于绩效的基于绩效的方法,目前在很大程度上被认为有可能在建造环境的安全性,弹性,可持续性和成本方面提供益处。但是,没有系统的设计指南,可以定义性能目标,设计消防情景和分析方法。本文重点介绍钢框架建筑,具有复合地板板坯,并利用基于性能的消防工程通过计算建模支持的防火结构深入分析。首先,定义了一组性能目标和相关的火灾方案。这些方案包括单个和多隔室火灾以及列丢失后作为辅助事件的火灾。然后,使用不同的建模方法研究了设计改变的结构和效果的响应。调查单板,单板,具有限制性和完整的建筑模型,以了解在边界条件下显着的影响,特别是在拉伸膜作用的发展上。完整的建筑模型表现出最有利的行为,而没有水平克制的单面板模型是最保守的。讨论了在火灾下钢框架建筑的计算建模的最佳实践,并提供了建议。本文演示了一种迭代设计程序,其中引入系统设计改变以解决观察到的故障模式。结果表明,基于性能的火灾设计可以利用先进的计算模型来检查多种设计替代品和危险场景的消防结构行为。 (c)2019 Elsevier Ltd.保留所有权利。

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