Performance-based Fire Safety Design of Reinforced Concrete Beams:

V. Kodur, Monther B. Dwaikat
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引用次数: 98

Abstract

A numerical model, in the form of a computer program, is presented for tracing the fire behavior of reinforced concrete (RC) beams over the entire range of loading from pre-fire conditions to collapse under fire. The three stages associated with the analysis of fire resistance; namely, establishing the fire temperature-time development, calculating the heat transfer through the structure from the fire, and the structural analysis are explained. The model, which accounts for nonlinear material properties at elevated temperatures, is capable of predicting the fire resistance of RC beams under realistic fire scenarios, load levels, and failure criteria. The validity of the numerical model is established by comparing the predictions from the computer program with results from full-scale fire resistance tests. Through the results of numerical study, it is shown that the type of failure criterion, load level, and fire scenario have significant influence on fire resistance of RC beams. The computer program can be used to undertake performance-based fire safety design of RC beams for any value of the significant parameters, such as fire exposure, concrete cover thickness, section dimensions, concrete strength, concrete type, and load intensity.
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基于性能的钢筋混凝土梁防火安全设计
本文以计算机程序的形式,建立了钢筋混凝土梁的数值模型,用于跟踪从火灾前状态到火灾下倒塌的整个加载范围内的火灾行为。与耐火性分析相关的三个阶段;即建立火灾温度-时间发展曲线,计算火灾通过结构的传热,并对结构分析进行说明。该模型考虑了高温下材料的非线性特性,能够预测RC梁在实际火灾情景、荷载水平和失效准则下的耐火性能。通过将计算机程序预测结果与全尺寸耐火试验结果进行比较,验证了数值模型的有效性。数值研究结果表明,破坏准则类型、荷载水平和火灾情景对RC梁的耐火性能有显著影响。计算机程序可用于对任何重要参数进行基于性能的RC梁防火安全设计,如火灾暴露程度、混凝土覆盖厚度、截面尺寸、混凝土强度、混凝土类型和荷载强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Fire Protection Engineering
Journal of Fire Protection Engineering 工程技术-材料科学:综合
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审稿时长
3 months
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