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首页> 外文期刊>Journal of Mechanical Science and Technology >Numerical simulation of holes and inclusions using adaptive polygonal finite element method
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Numerical simulation of holes and inclusions using adaptive polygonal finite element method

机译:采用自适应多边形有限元法的孔和夹杂物的数值模拟

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摘要

An adaptive polygonal finite element method using the techniques of cut-cell and quadtree refinement is presented for modeling holes and inclusions in 2-D solids. A mesh template is used to ensure the high-quality refined elements generated in quadtree refinement. By coupling the level set method, the polygonal computational mesh is directly extracted from the mesh template in every adaptive cycle. An error estimator based on recovery stress is devoted for adaptive purpose, which allows the mesh where it is needed is further refining. This method allows to model arbitrary shape holes and inclusions in arbitrary-geometry 2-D solid using the initial mesh of few rectangular elements, which considerably simplifies construction of the finite element model. And one curved boundary can be accurately represented though several steps of refinement. Numerical examples are solved and the obtained results are compared with reference solutions to show the simplicity and efficiency of the proposed method.
机译:提供了一种使用切割细胞和Quadtree改进技术的自适应多边形有限元方法,用于在2-D固体中建模孔和夹杂物。网格模板用于确保在Quadtree改进中产生的高质量精制元素。通过耦合电平集方法,在每个自适应周期中直接从网状模板中提取多边形计算网格。基于恢复应力的误差估算器用于自适应目的,允许所需的网格进一步精炼。该方法允许使用少量矩形元件的初始网格模拟任意形状的2-D固体的任意形状孔和夹杂物,这显着简化了有限元模型的结构。尽管有几个改进的步骤,可以准确地表示一个弯曲边界。解决了数值例子,并将获得的结果与参考溶液进行比较,以显示所提出的方法的简单性和效率。

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