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An efficient automatic adaptive algorithm for cohesive crack propagation modeling of concrete structures using matrix-free unstructured Galerkin Finite Volume Method

机译:无矩阵非结构化Galerkin有限体积法的混凝土结构凝聚裂纹传播建模的高效自适应算法

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摘要

Using Galerkin Finite Volume method, a 2D adaptive algorithm is developed for crack propagation simulation of concrete structures under mixed mode loading. The matrix free Finite Volume formulation is applied to implement a crack propagation model in a fully automatic adaptive mesh refinement framework for unstructured meshes. Cohesive cracks are implemented using nonlinear interface elements with bilinear softening constitutive equation. On contrary to existing cohesive crack models where the Newton-Raphson techniques are required to simulate the nonlinear behavior in the fracture process zone, the need for such a computational costly technique is relaxed. The matrix-free Finite Volume formulation method can provide better computational performance than the matrix-base methods. The introduced Method can also relax the problems of the standard Finite Element base methods with high aspect-ratio elements. The present Finite Volume model accurately predicts the crack propagation path and correctly evaluates the load-displacement curve while consumes low computational CPU time.
机译:使用Galerkin有限体积方法,开发了一种2D自适应算法,用于混合模式负载下混凝土结构的裂纹传播仿真。施加基质自由有限体积制剂以实现非结构化网格的全自动自适应网格细化框架中的裂纹传播模型。使用具有双线性软化本构型方程的非线性界面元件来实现粘性裂缝。与现有的粘性裂纹模型相反,牛顿Raphson技术需要模拟骨折过程区域中的非线性行为,放松了这种计算昂贵技术的需求。无矩阵有限体积配方方法可以提供比矩阵基础方法更好的计算性能。介绍的方法还可以通过高纵横比元素放宽标准有限元基方法的问题。目前的有限音量模型精确地预测裂缝传播路径,并正确地评估负载 - 位移曲线,同时消耗低计算CPU时间。

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