Estimation of the axial capacity of high-strength concrete-filled steel tube columns using artificial neural network, random forest, and extreme gradient boosting approaches

被引:0
|
作者
Sarir, Payam [1 ]
Ruangrassamee, Anat [1 ]
Iwanami, Mitsuyasu [2 ]
机构
[1] Chulalongkorn Univ, Fac Engn, Ctr Excellence Earthquake Engn & Vibrat, Dept Civil Engn, Bangkok 10330, Thailand
[2] Tokyo Inst Technol, Dept Civil Engn, Infrastruct Management Lab, Tokyo 1528550, Japan
关键词
artificial neural network; extreme gradient boosting; random forest; concrete-filled steel tube; machine learning; FIBER-REINFORCED CONCRETE; COMPRESSIVE STRENGTH; STUB COLUMNS; MECHANICAL-PROPERTIES; EXPERIMENTAL BEHAVIOR; LOAD BEHAVIOR; CFST; PREDICTION; DESIGN; CONFINEMENT;
D O I
10.1007/s11709-024-1126-7
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The study aims to develop machine learning-based mechanisms that can accurately predict the axial capacity of high-strength concrete-filled steel tube (CFST) columns. Precisely predicting the axial capacity of a CFST column is always challenging for engineers. Using artificial neural networks (ANNs), random forest (RF), and extreme gradient boosting (XG-Boost), a total of 165 experimental data sets were analyzed. The selected input parameters included the steel tensile strength, concrete compressive strength, tube diameter, tube thickness, and column length. The results indicated that the ANN and RF demonstrated a coefficient of determination (R2) value of 0.965 and 0.952 during the training and 0.923 and 0.793 during the testing phase. The most effective technique was the XG-Boost due to its high efficiency, optimizing the gradient boosting, capturing complex patterns, and incorporating regularization to prevent overfitting. The outstanding R2 values of 0.991 and 0.946 during the training and testing were achieved. Due to flexibility in model hyperparameter tuning and customization options, the XG-Boost model demonstrated the lowest values of root mean square error and mean absolute error compared to the other methods. According to the findings, the diameter of CFST columns has the greatest impact on the output, while the column length has the least influence on the ultimate bearing capacity.
引用
收藏
页码:1794 / 1814
页数:21
相关论文
共 50 条
  • [41] Residual axial bearing capacity of square high-strength concrete-filled steel tubular columns after transverse impact loading
    Zhu, Yong
    Yang, Hua
    Wan, Jun
    THIN-WALLED STRUCTURES, 2025, 208
  • [42] Calculation of bearing capacity of concrete-filled square steel tube short columns based on neural network
    Gao, Hua-Guo
    Yang, Yu-Chun
    Wang, Hai-Jun
    Shenyang Gongye Daxue Xuebao/Journal of Shenyang University of Technology, 2009, 31 (01): : 116 - 120
  • [43] Compressive behavior of FRP-confined elliptical concrete-filled high-strength steel tube columns
    Zeng, Jun-Jie
    Liang, Sheng-Da
    Li, Yong-Long
    Guo, Yong-Chang
    Shan, Guo-Yi
    COMPOSITE STRUCTURES, 2021, 266
  • [44] Research on axial bearing capacity of rectangular concrete-filled steel tubular columns based on artificial neural networks
    Yansheng Du
    Zhihua Chen
    Changqing Zhang
    Xiaochun Cao
    Frontiers of Computer Science, 2017, 11 : 863 - 873
  • [45] Research on axial bearing capacity of rectangular concrete-filled steel tubular columns based on artificial neural networks
    Du, Yansheng
    Chen, Zhihua
    Zhang, Changqing
    Cao, Xiaochun
    FRONTIERS OF COMPUTER SCIENCE, 2017, 11 (05) : 863 - 873
  • [46] Experimental study on compressive bearing capacity of high strength concrete-filled steel tube composite columns
    Kang, Hongzhen
    Yao, Lei
    Song, Ximin
    Ye, Yinghua
    ADVANCES IN CIVIL ENGINEERING AND ARCHITECTURE INNOVATION, PTS 1-6, 2012, 368-373 : 410 - +
  • [47] Hybrid bio-inspired metaheuristic approach for design compressive strength of high-strength concrete-filled high-strength steel tube columns
    Ahmadi, Masoud
    Ebadi-Jamkhaneh, Mehdi
    Dalvand, Ahmad
    Eidgahee, Danial Rezazadeh
    NEURAL COMPUTING & APPLICATIONS, 2024, 36 (14): : 7953 - 7969
  • [48] Hybrid bio-inspired metaheuristic approach for design compressive strength of high-strength concrete-filled high-strength steel tube columns
    Masoud Ahmadi
    Mehdi Ebadi-Jamkhaneh
    Ahmad Dalvand
    Danial Rezazadeh Eidgahee
    Neural Computing and Applications, 2024, 36 : 7953 - 7969
  • [49] Seismic behavior of square spiral-confined high-strength concrete-filled steel tube columns under high axial load ratio
    Hu, Hong-Song
    Chen, Zhen-Xin
    Wang, Hao-Zuo
    Guo, Zi-Xiong
    ENGINEERING STRUCTURES, 2022, 252
  • [50] Axial Strength of Concrete-Filled Square Steel Tubular Columns Reinforced by Inner Circular Steel Tube
    Li, Xinzhong
    Wei, Xueying
    Zhao, Junhai
    ADVANCES IN STRUCTURES, PTS 1-5, 2011, 163-167 : 4542 - 4545