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Averaging Techniques for Reliable and Efficient A Posteriori Finite Element Error Control: Analysis and Applications

机译:可靠高效的后验有限元误差控制的平均技术:分析与应用

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Local averaging techniques, which are used to postprocess discrete flux or stress approximations of low-order finite element schemes for elliptic boundary value problems, are applied for error control and adaptive mesh refinement. We put particular emphasis on the explicit calculation of all constants, arising in the proofs of reliability and efficiency, in terms of the known data and quantify the equivalence of local averaging techniques. We highlight and discuss a wide selection of applications for which averaging-based estimators provide highly accurate error control.
机译:局部平均技术用于误差控制和自适应网格细化,该技术用于对椭圆边界值问题的低阶有限元方案的离散通量或应力近似进行后处理。我们特别强调根据已知数据对所有常数的显式计算,这些计算由可靠性和效率的证明产生,并量化局部平均技术的等效性。我们重点介绍并讨论各种应用程序,这些应用程序基于平均的估算器可提供高度精确的误差控制。

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