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Nonlinear modeling of ultimate strength and strain of FRP-confined concrete using chaos control method

机译:FRP约束混凝土极限强度和应变的非线性混沌控制模型

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It is now well known that the confinement of concrete with fiber-reinforced polymer (FRP) composites can increase its strength and deformability. This paper presents a general nonlinear regression model to predict the ultimate conditions of FRP-confined concrete based on an iterative chaos control method (CCM). A dynamic chaos control factor is also proposed using the logistic map and a self-adaptive step size to achieve stabilization of the iterative chaos control method. To this end, a large database of axial compression tests on 769 circular FRP-confined concrete specimens was compiled from the published literature. Using the iterative method and the database, three nonlinear design-oriented models are developed and one of them is proposed for design applications. The results of this study show that the chaos control method can be successfully applied in the development of nonlinear models to predict the ultimate strength and strain of FRP-confined concrete. (C) 2016 Elsevier Ltd. All rights reserved.
机译:现在众所周知,用纤维增强聚合物(FRP)复合材料限制混凝土可以增加其强度和可变形性。本文提出了一种基于迭代混沌控制方法的通用非线性回归模型,以预测FRP约束混凝土的极限条件。还提出了利用逻辑映射和自适应步长的动态混沌控制因子,以实现迭代混沌控制方法的稳定。为此,从已发表的文献中收集了769个圆形FRP约束混凝土标本的大型轴向压缩试验数据库。使用迭代方法和数据库,开发了三种面向非线性设计的模型,并为设计应用提出了其中一种模型。研究结果表明,该混沌控制方法可以成功地应用于非线性模型的开发,以预测FRP约束混凝土的极限强度和应变。 (C)2016 Elsevier Ltd.保留所有权利。

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