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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >New recovery error indicator for adaptive finite-element analysis on waveguiding structures
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New recovery error indicator for adaptive finite-element analysis on waveguiding structures

机译:波导结构自适应有限元分析的新型恢复误差指标

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The adaptive finite-element method (FEM) is an iterative variant of the FEM where, in a first step, an initial mesh with few and low-order elements is generated, the corresponding algebraic problem is solved and the error in the solution is estimated in order to add degrees of freedom in those regions of the domain with the biggest error estimation. This process is repeated until an ending condition is reached. The two basic stages in this method are the error indication and the mesh enrichment. In this paper, within the analysis of waveguiding structures, a new error indicator based on the curl recovery is described. In addition, an overview on refinement techniques is presented, and the h-refinement employed in this study is briefly described. Results obtained with the curl-recovery indicator are discussed and compared with the classical nonadaptive FEM and two previously developed error indicators: the residual and flux continuity indicators.
机译:自适应有限元方法(FEM)是FEM的迭代变体,其中,第一步是生成具有少量低阶元素的初始网格,解决相应的代数问题,并估计解中的误差为了在误差估计最大的区域的那些区域中增加自由度。重复此过程,直到达到结束条件为止。该方法的两个基本阶段是误差指示和网格富集。本文在对波导结构的分析中,描述了一种基于卷曲恢复的新型误差指示器。此外,介绍了精炼技术的概述,并简要介绍了本研究中采用的h精炼。讨论了使用卷曲恢复指标获得的结果,并将其与经典的非自适应有限元法和两个以前开发的误差指标进行了比较:残差和通量连续性指标。

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