Axial capacity of FRP reinforced concrete columns: Empirical, neural and tree based methods

被引:1
|
作者
Dauji, Saha [1 ,2 ]
机构
[1] Bhabha Atom Res Ctr, Nucl Recycle Board, Mumbai 400094, India
[2] Homi Bhabha Natl Inst, Mumbai 400094, India
关键词
artificial neural network; concrete column; decision tree; empirical; fiber-reinforced polymer reinforcement; COMPRESSIVE STRENGTH; ARTIFICIAL-INTELLIGENCE; CORROSION PROCESS; BOND STRENGTH; PREDICTION; MODEL; NETWORK; BEHAVIOR; BEAMS; PERFORMANCE;
D O I
10.12989/sem.2024.89.3.283
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Machine learning (ML) models based on artificial neural network (ANN) and decision tree (DT) were developed for estimation of axial capacity of concrete columns reinforced with fiber reinforced polymer (FRP) bars. Between the design codes, the Canadian code provides better formulation compared to the Australian or American code. For empirical models based on elastic modulus of FRP, Hadhood et al. (2017) model performed best. Whereas for empirical models based on tensile strength of FRP, as well as all empirical models, Raza et al. (2021) was adjudged superior. However, compared to the empirical models, all ML models exhibited superior performance according to all five performance metrics considered. The performance of ANN and DT models were comparable in general. Under the present setup, inclusion of the transverse reinforcement information did not improve the accuracy of estimation with either ANN or DT. With selective use of inputs, and a much simpler ANN architecture (4-3-1) compared to that reported in literature (Raza et al. 2020: 6-11-11-1), marginal improvement in correlation could be achieved. The metrics for the best model from the study was a correlation of 0.94, absolute errors between 420 kN to 530 kN, and the range being 0.39 to 0.51 for relative errors. Though much superior performance could be obtained using ANN/DT models over empirical models, further work towards improving accuracy of the estimation is indicated before design of FRP reinforced concrete columns using ML may be considered for design codes.
引用
收藏
页码:283 / 300
页数:18
相关论文
共 50 条
  • [1] Axial Capacity of FRP-Reinforced Concrete Columns: Computational Intelligence-Based Prognosis for Sustainable Structures
    Arora, Harish Chandra
    Kumar, Sourav
    Kontoni, Denise-Penelope N.
    Kumar, Aman
    Sharma, Madhu
    Kapoor, Nishant Raj
    Kumar, Krishna
    BUILDINGS, 2022, 12 (12)
  • [2] Interpretable Machine Learning Algorithms to Predict the Axial Capacity of FRP-Reinforced Concrete Columns
    Cakiroglu, Celal
    Islam, Kamrul
    Bekdas, Gebrail
    Kim, Sanghun
    Geem, Zong Woo
    MATERIALS, 2022, 15 (08)
  • [3] Design of FRP-wrapped reinforced concrete columns for enhancing axial load carrying capacity
    Wang, Yung-Chih
    Hsu, K.
    COMPOSITE STRUCTURES, 2008, 82 (01) : 132 - 139
  • [4] Design of FRP-wrapped reinforced concrete columns for enhancing axial load carrying capacity
    Department of Civil Engineering, National Central University, Chung-li, 32001, Taiwan
    Compos. Struct., 1 (132-139):
  • [5] Axial behavior of reinforced concrete columns confined with FRP jackets
    Pessiki, S
    Harries, KA
    Kestner, JT
    Sause, R
    Ricles, JM
    JOURNAL OF COMPOSITES FOR CONSTRUCTION, 2001, 5 (04) : 237 - 245
  • [6] Prediction of Ultimate Capacity of Concrete Columns Reinforced with FRP Bars
    Korentz, Jacek
    Czarnecki, Witold
    POLYMERS, 2023, 15 (05)
  • [7] Maximum axial load carrying capacity of Fibre Reinforced-Polymer (FRP) bar reinforced concrete columns under axial compression
    Hasan, Hayder Alaa
    Sheikh, M. Neaz
    Hadi, Muhammad N. S.
    STRUCTURES, 2019, 19 : 227 - 233
  • [8] Neural network-based models versus empirical models for the prediction of axial load-carrying capacities of FRP-reinforced circular concrete columns
    Ali, Shehroze
    Ahmad, Junaid
    Iqbal, Umair
    Khan, Suliman
    Hadi, Muhammad N. S.
    STRUCTURAL CONCRETE, 2024, 25 (02) : 1148 - 1164
  • [9] Axial compression capacity of square steel-concrete-FRP-concrete composite columns
    Tao Y.
    Ye S.
    Chen J.
    Jianzhu Jiegou Xuebao/Journal of Building Structures, 2022, 43 (03): : 148 - 158
  • [10] Study on Ultimate Bearing Capacity of Reinforced Concrete Columns Combined with FRP
    Wu, Sai
    Zhao, Junhai
    Wei, Xueying
    ADVANCES IN STRUCTURAL ENGINEERING, PTS 1-3, 2011, 94-96 : 820 - 825