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A quantification of the modelling uncertainty of non-linear finite element analyses of large concrete structures

机译:大型混凝土结构非线性有限元分析建模不确定性的量化

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In order to make non-linear finite element analyses applicable during assessment of the global resistance of large concrete structures, there is need for a solution strategy with a low modelling uncertainty. A solution strategy comprises choices regarding force equilibrium, kinematic compatibility and constitutive relations. Relatively large solid finite elements and a fully triaxial material model for concrete were used in the present work. Bayesian inference was applied to results from 38 benchmark analyses. The results indicated that the modelling uncertainty could be represented as a log-normally distributed random variable with mean 1.10 and standard deviation of 0.12. A new method for characterizing the failure mode was developed. The results indicated that the physical uncertainties influenced the estimated parameters of the modelling uncertainty, and that this should be considered when other uncertainties are included in a reliability assessment. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了使非线性有限元分析适用于大型混凝土结构的整体抗力评估,需要一种具有低建模不确定性的解决方案。解决方案策略包括关于力平衡,运动相容性和本构关系的选择。在本工作中使用了相对较大的固体有限元和混凝土的全三轴材料模型。贝叶斯推断应用于38个基准分析的结果。结果表明,建模不确定性可以表示为对数正态分布的随机变量,平均值为1.10,标准差为0.12。开发了表征失效模式的新方法。结果表明,物理不确定性影响建模不确定性的估计参数,当在可靠性评估中包括其他不确定性时,应考虑这一点。 (C)2016 Elsevier Ltd.保留所有权利。

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