Prediction of Service Life in Concrete Structures based on Diffusion Model in a Marine Environment Using Mesh Free, FEM and FDM Approaches

Q3 Engineering
A. Farahani, H. Taghaddos
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引用次数: 2

Abstract

Chloride-induced corrosion is a key factor in the premature corrosion of concrete structures exposed to a marine environment. Fick's second law of diffusion is the dominant equation to model diffusion of chloride ions. This equation is traditionally solved by Finite Element Method (FEM) and Finite Difference Method (FDM). Although these methods are robust and efficient, they may face some numerical issues due to discretization process. This study solves the Fick's equation using the Element-Free Galerkin (EFG) method as well as traditional FEM and FDM. The results of these numerical methods are compared together, and validated with the analytical solution in special cases. The results show that the EFG method predicts the service life of the concrete structures, more accurately than the other methods, and exhibits the lowest displacement error and energy error for a constant diffusion coefficient problem. FDM can be performed very efficiently for simple models, and the displacement errors produced by this method do not differ considerably from the EFG results. Therefore, FDM could compete with the EFG method in simple geometries. FEM can be used with a sufficient number of elements while the convergence of the results should be controlled. However, in complicated models, FEM and especially the EFG method are much more flexible than FDM.
海洋环境下基于扩散模型的混凝土结构寿命无网格、有限元和FDM预测
氯化物腐蚀是海洋环境下混凝土结构过早腐蚀的关键因素。菲克第二扩散定律是模拟氯离子扩散的主要方程。传统的求解方法是有限元法和有限差分法。虽然这些方法具有鲁棒性和有效性,但由于离散化过程的原因,它们可能面临一些数值问题。本文采用无单元伽辽金(EFG)法,结合传统的有限元法和FDM法求解菲克方程。对这些数值方法的结果进行了比较,并在特殊情况下与解析解进行了验证。结果表明,EFG方法预测混凝土结构的使用寿命比其他方法更准确,对于常扩散系数问题,EFG方法的位移误差和能量误差最小。对于简单的模型,FDM可以非常有效地执行,并且该方法产生的位移误差与EFG结果相差不大。因此,FDM可以在简单的几何形状上与EFG方法竞争。有限元法可以在单元数量足够的情况下使用,但应控制结果的收敛性。然而,在复杂的模型中,有限元方法,特别是EFG方法比FDM方法灵活得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Rehabilitation in Civil Engineering
Journal of Rehabilitation in Civil Engineering Engineering-Building and Construction
CiteScore
1.60
自引率
0.00%
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0
审稿时长
12 weeks
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