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Numerical Analysis of RC Bridge Piers with Rectangular Hollow Cross-section Retrofitted with FRP Jackets

机译:FRP夹套加筋矩形空心截面RC桥墩的数值分析

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摘要

The research presented in this article deals with the seismic retrofit of bridge piers with rectangular hollow cross-section using fiber-reinforced polymer (FRP) jackets. A two-level numerical approach that combines finite element method (FEM) analyses and fiber modeling is proposed. The FEM is used to study the effect of FRP jackets on the properties of concrete. The analyses show that the existing empirical laws for FRP-confined concrete are not suitable for piers with hollow cross-section, as the effect of confinement is not uniform within the cross-section and the stress-strain curves show softening after peak strength. Fiber modeling is used to study the global behavior of reinforced concrete piers with rectangular hollow cross-section wrapped with FRP jackets. To account for confinement, the properties of the concrete fibers are modified according to the results of the FEM analyses. The proposed method is validated against experimental results and used for an extensive parametric study. It is found that the effectiveness of jacketing is conditioned by the axial load, longitudinal reinforcement, and jacket dimensions. An empirical design equation is formulated on the basis of the numerical analyses.
机译:本文介绍的研究涉及使用纤维增强聚合物(FRP)护套进行矩形空心截面桥墩的抗震改造。提出了一种结合有限元分析和纤维建模的两级数值方法。 FEM用于研究FRP护套对混凝土性能的影响。分析表明,FRP约束混凝土的现有经验法则不适用于空心截面的墩,因为截面内的约束作用不均匀,并且应力-应变曲线在达到峰值强度后会变软。纤维建模用于研究带有FRP护套包裹的矩形空心横截面的钢筋混凝土墩的整体性能。为了限制,根据FEM分析的结果修改了混凝土纤维的性能。所提出的方法已针对实验结果进行了验证,并用于广泛的参数研究。发现护套的有效性受轴向载荷,纵向加固和护套尺寸的影响。在数值分析的基础上,建立了经验设计方程。

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