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Analysis and improvements of the DP_N acceleration technique for the method of characteristics in unstructured meshes

机译:非结构网格特征方法的DP_N加速技术分析与改进

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摘要

Algebraic preconditioners, renumbering techniques and a two-level algebraic multigrid method have been implemented to speed up the Krylov iterations of the DP_N equations used for the acceleration of the method of characteristics in unstructured meshes. These algorithms were customized to take advantage of the cell-based structure of the DP_N equations. Moreover, two techniques to speed up the solution of the multigroup eigenvalue MOC equations have been implemented. A solution of the multigroup eigenvalue DP_N equation has been developed to provide a first guess for the external transport iterations. Next, a multigroup DP_N acceleration method has been developed to accelerate the thermal iterations. This latter development has been particularly useful because our standard multigroup rebalancing acceleration was counterproductive in the presence of heavy absorbents. All these acceleration techniques have been incorporated in the spectral code APOLLO2. Numerical examples and comparisons are given for the 6-group eigenvalue Atrium benchmark problem, Our best calculation, an initialized ILU0-preconditioned DP_1 scheme with thermal acceleration, was 7.7 times faster that the free iteration calculation, while the total number of transport iterations was divided by 17.
机译:已经实施了代数预处理器,重编号技术和两级代数多重网格方法,以加快用于加速非结构化网格中的特征方法的DP_N方程的Krylov迭代。对这些算法进行了定制,以利用DP_N方程的基于单元格的结构。此外,已经实现了两种加快多组特征值MOC方程求解的技术。已开发出多组特征值DP_N方程的解决方案,以为外部传输迭代提供第一个猜测。接下来,开发了一种多组DP_N加速方法来加速热迭代。后一种发展特别有用,因为在存在大量吸收剂的情况下,我们的标准多组再平衡加速适得其反。所有这些加速技术已合并到频谱代码APOLLO2中。给出了6组特征值中庭基准问题的数值示例和比较,我们的最佳计算是经过初始化的具有热加速度的ILU0预处理DP_1方案,其速度是自由迭代计算的7.7倍,而运输迭代的总数被除以到17。

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  • 来源
    《Annals of nuclear energy 》 |2005年第2期| p.163-193| 共31页
  • 作者单位

    Commissariat a l'Energie Atomique, Direction de l'Energie Nucleaire Services d'Etudes de Reacteurs et de Modelisation Avancee, CEA de Saclay, DM2S/SERMA, 91191 Gif-sur-Yvette cedex, France;

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