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Reliability analysis of reinforced concrete columns exposed to fire

机译:火灾下钢筋混凝土柱的可靠度分析

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摘要

A reliability analysis is conducted on reinforced concrete columns subjected to fire load. From an evaluation of load frequency of occurrence, load random variables are taken to be dead load, sustained live load, and fire temperature. Resistance is developed for axial capacity, with random variables taken as steel yield strength, concrete compressive strength, placement of reinforcement, and section width and height A rational interaction model based on the Rankine approach is used to estimate column capacity as a function of fire exposure time. Various factors were considered in the analysis such as fire type, load ratio, reinforcement ratio, cover, concrete strength, load eccentricity, and other parameters. Reliability was computed from 0 to 4 h of fire exposure using Monte Carlo simulation. It was found that reliability decreased nonlinearly as a function of time, while the most significant parameters were fire type, load ratio, eccentricity, and reinforcement ratio.
机译:对承受火荷载的钢筋混凝土柱进行了可靠性分析。通过评估负载的出现频率,可以将负载随机变量作为静负载,持续活负载和着火温度。针对轴向承载力开发了阻力,并将随机变量视为钢的屈服强度,混凝土抗压强度,钢筋的位置以及截面的宽度和高度。基于兰金方法的合理相互作用模型用于估计柱承载力随火灾暴露的函数时间。分析中考虑了多种因素,例如火灾类型,负载比,增强比,覆盖率,混凝土强度,负载偏心率和其他参数。使用蒙特卡洛模拟从火暴露0到4小时计算出可靠性。发现可靠性随时间呈非线性下降,而最重要的参数是火灾类型,负荷率,偏心率和增强率。

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