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An a posteriori residual-based spatial discretization error estimator for S_N neutron transport

机译:S_N中子输运的基于后验残差的空间离散误差估计器

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The "residual source estimator", an implicit residual-based spatial discretization error estimator for S-N neutron transport methods, is introduced. The estimator uses an approximation of the residual as a fixed source for an analogous transport problem whose solution is the error estimate, using the same transport operator as the original numerical solution. The complete derivation of the residual source estimator, the approximation of the residual, and higher-order derivatives is included.The performance of the residual source estimator for 0-order DGFEM is tested against reference solutions. For problems with true solutions discontinuous in the first derivative across the singular characteristics, the residual source estimator is generally accurate, precise, and computationally affordable compared to similar estimators. It suffers in problems where solutions are discontinuous, particularly when the discontinuity inflicts significant inaccuracies on the discrete solution; however, compared to other estimators, which suffer similarly, it remains a competitive option. (C) 2019 Elsevier Ltd. All rights reserved.
机译:介绍了“残源估计器”,这是一种用于S-N中子传输方法的基于残差的隐式空间离散化误差估计器。估计器使用残差的近似值作为类似运输问题的固定源,其解决方案是误差估计,并使用与原始数值解相同的运输算子。包括残差源估计量的完全推导,残差近似值和高阶导数。针对参考溶液测试了零级DGFEM的残差源估计量的性能。对于具有奇异特性的一阶导数不连续的真实解的问题,与相似的估计器相比,残差源估计器通常是准确,精确的,并且计算上可以承受的。当解决方案不连续时,尤其是在不连续性给离散解决方案造成严重不准确性时,就会遇到问题。但是,与遭受类似影响的其他估算器相比,它仍然是一种竞争选择。 (C)2019 Elsevier Ltd.保留所有权利。

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