Deng Chubing, Zhang Ruiliang, Xue Xinhua
State Key Laboratory of Hydraulics and Mountain River Engineering, College of Water Resource and Hydropower, Sichuan University, Chengdu 610065, China.
Polymers (Basel). 2022 Sep 1;14(17):3615. doi: 10.3390/polym14173615.
Fiber-reinforced polymer (FRP) is widely used in the field of structural engineering, for example, as a confining material for concrete. The ultimate conditions (i.e., compressive strength and ultimate axial strain) are key factors that need to be considered in the practical applications of FRP-confined concrete cylinders. However, the prediction accuracy of existing confinement models is low and cannot provide an effective reference for practical applications. In this paper, a database containing experimental data of 221 FRP-confined normal concrete cylinder specimens was collected from the available literature, and eleven parameters such as the confining stress, stiffness ratio and strain ratio were selected as the input parameters. Then, a promising machine learning algorithm, i.e., group method of data handling (GMDH), was applied to establish a confinement model. The GMDH model was compared with nine existing models, and the prediction results of these models were evaluated by five comprehensive indicators. The results indicated that the GMDH model had higher prediction accuracy and better stability than existing confinement models, with determination coefficients of 0.97 (compressive strength) and 0.91 (ultimate axial strain). Finally, a convenient graphical user interface (GUI) was developed, which can provide a quick and efficient reference for engineering design and is freely available.
纤维增强聚合物(FRP)在结构工程领域有着广泛应用,例如,作为混凝土的约束材料。极限条件(即抗压强度和极限轴向应变)是FRP约束混凝土圆柱体实际应用中需要考虑的关键因素。然而,现有约束模型的预测精度较低,无法为实际应用提供有效的参考。本文从现有文献中收集了包含221个FRP约束普通混凝土圆柱体试件试验数据的数据库,并选取了诸如约束应力、刚度比和应变比等11个参数作为输入参数。然后,应用一种有前景的机器学习算法——数据处理分组方法(GMDH)来建立约束模型。将GMDH模型与九个现有模型进行比较,并通过五个综合指标对这些模型的预测结果进行评估。结果表明,GMDH模型比现有约束模型具有更高的预测精度和更好的稳定性,抗压强度的决定系数为0.97,极限轴向应变的决定系数为0.91。最后,开发了一个便捷的图形用户界面(GUI),它可为工程设计提供快速高效的参考,且可免费获取。