首页> 外文期刊>Annals of nuclear energy >Unstructured partial- and net-current based coarse mesh finite difference acceleration applied to the extended step characteristics method in NEWT
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Unstructured partial- and net-current based coarse mesh finite difference acceleration applied to the extended step characteristics method in NEWT

机译:基于非结构化部分电流和净电流的粗网格有限差分加速度应用于NEWT的扩展步长特征方法

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摘要

The NEWT (NEW Transport algorithm) code is a multi-group discrete ordinates neutral-particle transport code with flexible meshing capabilities. This code employs the Extended Step Characteristic spatial discretization approach using arbitrary polygonal mesh cells. Until recently, the coarse mesh finite difference acceleration scheme in NEWT for fission source iteration has been available only for rectangular domain boundaries because of the limitation to rectangular coarse meshes. Therefore no acceleration scheme has been available for triangular or hexagonal problem boundaries. A conventional and a new partial-current based coarse mesh finite difference acceleration schemes with unstructured coarse meshes have been implemented within NEWT to support any form of domain boundaries. The computational results show that the new acceleration schemes works well, with performance often improved over the earlier two-level rectangular approach.
机译:NEWT(NEW运输算法)代码是具有灵活网格划分功能的多组离散纵坐标中性粒子运输代码。该代码使用扩展多边形特征空间离散化方法,该方法使用任意多边形网格单元。直到最近,由于对矩形粗网格的限制,NEWT中用于裂变源迭代的粗网格有限差分加速方案仅适用于矩形域边界。因此,没有加速方案可用于三角形或六边形问题边界。在NEWT中已实现了具有非结构化粗网格的常规和新的基于局部电流的粗网格有限差分加速方案,以支持任何形式的域边界。计算结果表明,新的加速方案效果很好,其性能通常比早期的两级矩形方法有所提高。

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