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Reliability analysis of reinforced concrete haunched beams shear capacity based on stochastic nonlinear FE analysis

机译:基于随机非线性有限元分析的钢筋混凝土弯梁抗剪承载力可靠度分析

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摘要

The lack of experimental studies on the mechanical behavior of reinforced concrete (RC) haunched beams leads to difficulties in statistical and reliability analyses. This study performs stochastic and reliability analyses of the ultimate shear capacity of RC haunched beams based on nonlinear finite element analysis. The main aim of this study is to investigate the influence of uncertainty in material properties and geometry parameters on the mechanical performance and shear capacity of RC haunched beams. Firstly, 65 experimentally tested RC haunched beams and prismatic beams are analyzed via deterministic nonlinear finite element method by a special program (ATENA) to verify the efficiency of utilized numerical models, the shear capacity and the crack pattern. The accuracy of nonlinear finite element analyses is verified by comparing the results of nonlinear finite element and experiments and both results are found to be in a good agreement. Afterwards, stochastic analyses are performed for each beam where the RC material properties and geometry parameters are assigned to take probabilistic values using an advanced simulating procedure. As a result of stochastic analysis, statistical parameters are determined. The statistical parameters are obtained for resistance bias factor and the coefficient of variation which were found to be equal to 1.053 and 0.137 respectively. Finally, reliability analyses are accomplished using the limit state functions of ACI-318 and ASCE-7 depending on the calculated statistical parameters. The results show that the RC haunched beams have higher sensitivity and riskiness than the RC prismatic beams.
机译:缺乏对钢筋混凝土绞合梁力学性能的实验研究导致统计和可靠性分析困难。本研究基于非线性有限元分析方法对钢筋混凝土弯曲梁的极限抗剪承载力进行了随机和可靠度分析。这项研究的主要目的是研究材料特性和几何参数的不确定性对钢筋混凝土弯曲梁的力学性能和抗剪承载力的影响。首先,通过确定性非线性有限元方法,通过专用程序(ATENA),通过确定性的非线性有限元方法,分析了65个经过试验的RC弯曲梁和棱柱形梁,以验证所利用数值模型,剪切能力和裂缝模式的效率。通过对非线性有限元分析结果与实验结果进行比较,验证了非线性有限元分析的准确性,发现两者吻合良好。然后,对每个梁进行随机分析,其中使用先进的模拟程序为RC材料属性和几何参数指定了概率值。作为随机分析的结果,确定统计参数。获得了电阻偏置因子和变异系数的统计参数,发现它们分别等于1.053和0.137。最后,根据计算的统计参数,使用ACI-318和ASCE-7的极限状态函数完成可靠性分析。结果表明,RC弯角梁比RC棱柱形梁具有更高的灵敏度和风险。

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