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首页> 外文期刊>Computational Methods in Civil Engineering >Equilibrium condition nonlinear modeling of a cracked concrete beam using a 2D Galerkin finite volume solver
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Equilibrium condition nonlinear modeling of a cracked concrete beam using a 2D Galerkin finite volume solver

机译:二维Galerkin有限体积求解器对开裂混凝土梁的平衡条件非线性建模。

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A constitutive model based on two–dimensional unstructured Galerkin finite volume method (GFVM) is introduced and applied for analyzing nonlinear behavior of cracked concrete structures in equilibrium condition. The developed iterative solver treats concrete as an orthotropic nonlinear material and considers the softening and hardening behavior of concrete under compression and tension by using two equivalent uniaxial stress–strain relations. The concepts of current strength in a principal stress space and secant stiffness matrix are utilized to describe the biaxial behavior of concrete and the post–peak progress of stress–strain relation is modeled using the fracture energy method. Moreover, a smeared rotating crack method (SRCM) formulation is implemented in the solver to spot the nonlinear behavior of damaged structure. In order to demonstrate the performance of the model at a structural level, available experimental results of a notched beam under three point bending are presented. With the intention of demonstrating the post–peak performance of the model, the procedure of loading is simulated by imposing an incremental monotonic displacement. The envelope curve of equivalent load versus crack mouth opening displacement (CMOD) is utilized to evaluate the accuracy of the introduced method.in
机译:介绍了一种基于二维非结构化Galerkin有限体积法(GFVM)的本构模型,并将其用于分析开裂混凝土结构在平衡条件下的非线性行为。开发的迭代求解器将混凝土视为正交异性非线性材料,并通过使用两个等效的单轴应力-应变关系来考虑混凝土在压缩和拉伸下的软化和硬化行为。利用主应力空间中的当前强度和割线刚度矩阵的概念来描述混凝土的双轴行为,并使用断裂能法对应力-应变关系的峰后进程进行建模。此外,在求解器中实现了涂抹旋转裂纹法(SRCM)公式,以发现受损结构的非线性行为。为了证明该模型在结构水平上的性能,提出了三点弯曲下带缺口梁的可用实验结果。为了演示模型的峰后性能,通过施加增量单调位移来模拟加载过程。利用等效载荷与裂纹口张开位移(CMOD)的包络曲线来评估所引入方法的准确性。

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