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首页> 外文期刊>International Journal for Numerical Methods in Engineering >An adaptive interface-enriched generalized FEM for the treatment of problems with curved interfaces
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An adaptive interface-enriched generalized FEM for the treatment of problems with curved interfaces

机译:自适应接口丰富的广义有限元法,用于处理弯曲接口问题

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摘要

An adaptive refinement scheme is presented to reduce the geometry discretization error and provide higher-order enrichment functions for the interface-enriched generalized FEM. The proposed method relies on the h-adaptive and p-adaptive refinement techniques to reduce the discrepancy between the exact and discretized geometries of curved material interfaces. A thorough discussion is provided on identifying the appropriate level of the refinement for curved interfaces based on the size of the elements of the background mesh. Varied techniques are then studied for selecting the quasi-optimal location of interface nodes to obtain a more accurate approximation of the interface geometry. We also discuss different approaches for creating the integration sub-elements and evaluating the corresponding enrichment functions together with their impact on the performance and computational cost of higher-order enrichments. Several examples are presented to demonstrate the application of the adaptive interface-enriched generalized FEM for modeling thermo-mechanical problems with intricate geometries. The accuracy and convergence rate of the method are also studied in these example problems. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:提出了一种自适应细化方案,以减少几何离散误差,并为富含接口的广义有限元法提供高阶富集功能。所提出的方法依赖于h自适应和p自适应精化技术,以减少弯曲材料界面的精确几何形状和离散几何形状之间的差异。将根据背景网格元素的大小,为弯曲界面确定适当的细化级别,进行详尽的讨论。然后研究各种技术来选择接口节点的准最佳位置,以获得接口几何的更精确近似。我们还将讨论创建集成子元素和评估相应浓缩功能的不同方法,以及它们对高级浓缩的性能和计算成本的影响。给出了几个例子,以证明自适应接口丰富的广义有限元法在复杂几何形状的热机械问题建模中的应用。在这些示例问题中,还研究了该方法的准确性和收敛速度。版权所有(c)2015 John Wiley&Sons,Ltd.

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