首页> 外文期刊>Nuclear engineering and technology >COMPUTATIONAL EFFICIENCY OF A MODIFIED SCATTERING KERNEL FOR FULL-COUPLED PHOTON-ELECTRON TRANSPORT PARALLEL COMPUTING WITH UNSTRUCTURED TETRAHEDRAL MESHES
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COMPUTATIONAL EFFICIENCY OF A MODIFIED SCATTERING KERNEL FOR FULL-COUPLED PHOTON-ELECTRON TRANSPORT PARALLEL COMPUTING WITH UNSTRUCTURED TETRAHEDRAL MESHES

机译:无结构四面体网格全耦合光子电子输运并行计算的修正散射核的计算效率

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摘要

Scattering source calculations using conventional spherical harmonic expansion may require lots of computation time to treat full-coupled three-dimensional photon-electron transport in a highly anisotropic scattering medium where their scattering cross sections should be expanded with very high order (e.g., P_7 or higher) Legendre expansions. In this paper, we introduce a modified scattering kernel approach to avoid the unnecessarily repeated calculations involved with the scattering source calculation, and used it with parallel computing to effectively reduce the computation time. Its computational efficiency was tested for three-dimensional full-coupled photon-electron transport problems using our computer program which solves the multi-group discrete ordinates transport equation by using the discontinuous finite element method with unstructured tetrahedral meshes for complicated geometrical problems. The numerical tests show that we can improve speed up to 17~42 times for the elapsed time per iteration using the modified scattering kernel, not only in the single CPU calculation but also in the parallel computing with several CPUs.
机译:使用常规球谐展开的散射源计算可能需要大量计算时间才能处理高度各向异性散射介质中的全耦合三维光子电子输运,在该介质中,其散射截面应以非常高的倍数扩展(例如P_7或更高) )Legendre扩展。在本文中,我们引入了一种改进的散射核方法,以避免与散射源计算有关的不必要的重复计算,并将其与并行计算结合使用以有效地减少计算时间。使用我们的计算机程序对三维全耦合光子电子输运问题的计算效率进行了测试,该计算机程序通过使用具有非结构化四面体网格的不连续有限元方法求解复杂的几何问题来求解多组离散纵坐标输运方程。数值试验表明,使用改进的散射核,不仅在单CPU计算中,而且在多CPU并行计算中,每次迭代的经过时间可提高速度达17〜42倍。

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