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Reliable and efficient error control for an adaptive Galerkin-characteristic method for convection-dominated diffusion problems

机译:对流占优扩散问题的自适应Galerkin特征方法的可靠高效误差控制

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摘要

An efficient and reliable a-posteriori error estimator is developed for a characteristic-Galerkin finite element method for time-dependent convection-dominated problems. An adaptive algorithm with variable time and space steps is proposed and studied. At each time step in this algorithm grid coarsening occurs solely at the final iteration of the adaptive procedure, meaning that only time and space refinement is allowed before the final iteration. It is proved that at each time step this adaptive algorithm is capable of reducing errors below a given tolerance in a finite number of iteration steps. Numerical results are presented to check the theoretical analysis.
机译:针对基于时间的对流占优问题的特征-Galerkin有限元方法,开发了一种高效可靠的后验误差估计器。提出并研究了具有可变时空步长的自适应算法。在此算法的每个时间步上,网格粗化仅发生在自适应过程的最终迭代中,这意味着在最终迭代之前仅允许时间和空间优化。事实证明,在每个时间步长,该自适应算法都可以在有限数量的迭代步长中将误差降低到给定公差以下。数值结果表明了理论分析的正确性。

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