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An improved local error estimate in adaptive finite element analysis based on element energy projection technique

机译:基于单元能量投影技术的自适应有限元分析中改进的局部误差估计

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摘要

Purpose - An improved adaptive finite element analysis based on local error estimate is proposed via the element energy projection (EEP) technique. This paper aims to discuss the aforementioned idea. Design/methodology /approach - The computational region for a posteriori error estimation based on EEP method is further confined to a critical set of local elements generated in the previous adaptive step, enhancing efficiency while maintaining accuracy. The adaptive procedure incorporated with hierarchical mesh refinement is then developed. Findings - The effectiveness of the improved error estimation of the overall adaptive analysis is confirmed by several benchmark examples. The results show that the shrinkage of the local computational region has little negative influence on the accuracy of a posteriori error estimation, thus yielding an improved adaptive procedure with simplified logic and reduced cost. Originality/value - By localizing the computational region for error estimation, two crucial but cumbersome tricks, i.e. treatments of virtual elements and hanging nodes, are removed, giving the proposed approach full clarity and flexibility. The improved adaptive procedure characterizes simpler and faster computational algorithm and can produce results with required accuracy measured in maximum norm.
机译:目的 - 通过元素能量投影(EEP)技术,提出一种基于局部误差估计的改进自适应有限元分析。本文旨在讨论上述想法。设计/方法/途径 - 基于EEP方法的后验误差估计的计算区域进一步限制在上一个自适应步骤中生成的一组关键局部元素,从而在保持准确性的同时提高效率。然后开发了包含分层网格细化的自适应程序。研究结果 - 几个基准示例证实了改进的整体自适应分析误差估计的有效性。结果表明,局部计算区域的收缩对后验误差估计的精度影响不大,从而产生了一种改进的自适应过程,逻辑简化,成本降低。独创性/价值 - 通过定位用于误差估计的计算区域,消除了两个关键但繁琐的技巧,即虚拟元素和悬挂节点的处理,使所提出的方法具有充分的清晰度和灵活性。改进的自适应程序表征了更简单、更快的计算算法,并且可以产生以最大范数测量所需的精度的结果。

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