复合材料科学与工程 ›› 2020, Vol. 0 ›› Issue (7): 58-67.

• 基础研究 • 上一篇    下一篇

基于贝叶斯理论的FRP约束矩形混凝土柱轴压极限强度研究

陈景, 李翔宇   

  1. 武汉大学土木建筑工程学院,武汉430072
  • 收稿日期:2019-11-05 出版日期:2020-07-28 发布日期:2020-07-28
  • 作者简介:陈景(1996-),男,硕士,主要从事纤维增强复合材料约束混凝土力学性能方面的研究,chen_jing@whu.edu.cn。

RESEARCH ON AXIAL COMPRESSION ULTIMATE STRENGTH OF FRP-CONFINED RECTANGULAR CONCRETE COLUMN BASED ON BAYESIAN THEORY

CHEN Jing, LI Xiang-yu   

  1. School of Civil Engineering, Wuhan University, Wuhan 430072, China
  • Received:2019-11-05 Online:2020-07-28 Published:2020-07-28

摘要: 基于贝叶斯理论的模型参数识别方法,不仅可以考虑模型误差的影响,还可以得到模型中参数的最有可能值,同时定量描述各参数的不确定性。为获得更合理的FRP约束矩形(含方形)混凝土柱轴压极限强度模型,广泛整理了已有试验数据,并对已有极限强度模型进行评估,归纳出四种典型的应力-应变曲线形态以及三种典型的极限强度模型形式。在对已有平均断裂应变率计算公式进行修正的基础上,进一步建立了基于贝叶斯理论的极限强度模型参数识别框架,采用MATLAB编程获取到模型参数最有可能值和协方差矩阵。基于所识别的最有可能值,进一步优化得到了与FRP约束圆形混凝土柱轴压强度模型相统一的模型。与部分已有极限强度模型对比发现,新提出的模型在强度预测上更为准确,模型形式更加科学合理。

关键词: 贝叶斯理论, FRP约束混凝土, 极限强度模型, 参数识别, 复合材料

Abstract: Based on Bayesian theory, the model parameter identification method can not only consider the influence of model error, but also obtain the most probable value of the parameters in the model, and quantitatively describe the uncertainty of each parameter. In order to obtain a more reasonable axial compression ultimate strength model of FRP-confined square and rectangular concrete columns, the existing experimental data are extensively compiled, and the existing ultimate strength model is evaluated. Four typical stress-strain curve shapes and three typical types of ultimate strength model are summarized. Based on the identification of the existing average strain rate calculation formulas, the parameter identification framework of the ultimate strength model based on Bayesian theory is established. The most probable value and covariance matrix of the model parameters are obtained by MATLAB programming. Based on the most probable values, a new model was proposed, which is consistent with the FRP-constrained circular concrete axial compression ultimate strength model. Compared with some existing ultimate strength models, the newly proposed model is more accurate in intensity prediction, and the model form is more scientific and reasonable.

Key words: ayesian theory, FRP confined concrete, ultimate strength model, parameter identification, composites

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