Geometric Decomposition and Efficient Implementation of High Order Face and Edge Elements

IF 2.6 3区 物理与天体物理 Q1 PHYSICS, MATHEMATICAL Communications in Computational Physics Pub Date : 2024-05-01 DOI:10.4208/cicp.oa-2023-0249
Chunyu Chen,Long Chen,Xuehai Huang, Huayi Wei
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Abstract

This study investigates high-order face and edge elements in finite element methods, with a focus on their geometric attributes, indexing management, and practical application. The exposition begins by a geometric decomposition of Lagrange finite elements, setting the foundation for further analysis. The discussion then extends to $H$(div)-conforming and $H$(curl)-conforming finite element spaces, adopting variable frames across differing sub-simplices. The imposition of tangential or normal continuity is achieved through the strategic selection of corresponding bases. The paper concludes with a focus on efficient indexing management strategies for degrees of freedom, offering practical guidance to researchers and engineers. It serves as a comprehensive resource that bridges the gap between theory and practice.
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高阶面和边元素的几何分解与高效实现
本研究探讨了有限元方法中的高阶面元和边元,重点是它们的几何属性、索引管理和实际应用。论述从拉格朗日有限元的几何分解开始,为进一步分析奠定了基础。然后,讨论延伸到$H$(div)-conforming和$H$(curl)-conforming有限元空间,在不同的子简约中采用不同的框架。通过策略性地选择相应的基,可以实现切向或法向连续性。论文最后重点介绍了自由度的高效索引管理策略,为研究人员和工程师提供了实用指导。它是一种综合性资源,在理论与实践之间架起了一座桥梁。
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来源期刊
Communications in Computational Physics
Communications in Computational Physics 物理-物理:数学物理
CiteScore
4.70
自引率
5.40%
发文量
84
审稿时长
9 months
期刊介绍: Communications in Computational Physics (CiCP) publishes original research and survey papers of high scientific value in computational modeling of physical problems. Results in multi-physics and multi-scale innovative computational methods and modeling in all physical sciences will be featured.
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