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首页> 外文期刊>Journal of structural engineering >Finite Element Simulation of Concrete-Filled Double-Skin Tube Columns Subjected to Postearthquake Fires
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Finite Element Simulation of Concrete-Filled Double-Skin Tube Columns Subjected to Postearthquake Fires

机译:地震后火灾的双层钢管柱有限元模拟

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摘要

Detailed finite-element (FE) analyses were conducted using commercial software to simulate the behavior of concrete-filled double-skin tube (CFDST) columns subjected to postearthquake fires. The main goal of these simulations was to replicate results from a series of experiments that first subjected CFDST columns to different levels of seismic damage by applying cyclic lateral loading, and then fire testing of the same specimens in a furnace. The numerical simulations paralleled the experiments in the loading sequence. Different material models and modeling techniques were assessed in terms of reproducing experimental observations including local failure modes such as steel tube buckling. Results from the cyclic loading simulations including residual deformations were maintained as initial conditions for the subsequent thermal-stress analysis to simulate the fire testing phase of the experiments. A sequentially coupled nonlinear thermal-stress analysis was conducted on the models of CFDST columns to study the effects of exposure to a standard fire (time-temperature) curve. Numerical simulations using material properties adopted from European general rules for structural fire design provided a reasonable comparison to experimental results for both during and postfire situations. (C) 2015 American Society of Civil Engineers.
机译:使用商用软件进行了详细的有限元(FE)分析,以模拟遭受地震后火灾的填充混凝土双层管(CFDST)柱的行为。这些模拟的主要目的是复制一系列实验的结果,这些实验首先通过施加循环侧向载荷对CFDST柱进行不同程度的地震破坏,然后在熔炉中对相同的标本进行火测试。数值模拟使实验与加载顺序平行。根据再现的实验观察结果评估了不同的材料模型和建模技术,包括局部失效模式,例如钢管屈曲。循环载荷模拟的结果(包括残余变形)被保留为初始条件,用于后续的热应力分析,以模拟实验的火力测试阶段。在CFDST色谱柱的模型上进行了顺序耦合的非线性热应力分析,以研究暴露于标准火灾(时间-温度)曲线的影响。使用欧洲通用规则进行结构防火设计的材料特性进行的数值模拟,为火灾期间和火灾后的实验结果提供了合理的比较。 (C)2015年美国土木工程师学会。

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