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首页> 外文期刊>Annals of nuclear energy >Development of 3-D parallel first-collision source method for discrete ordinate code JSNT-S
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Development of 3-D parallel first-collision source method for discrete ordinate code JSNT-S

机译:离散坐标代码JSNT-S的3-D并行第一碰撞源方法的开发

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摘要

A new three-dimensional parallel first-collision source code named JSNT-FCS is developed to alleviate the ray effect in discrete ordinate method. JSNT-FCS applies the ray trace method to obtain uncollided flux both for the Cartesian and cylindrical geometry. Parallel calculation is implemented based on spatial domain partition algorithm. The ray trace is performed in each domain based on the entire meshes to avoid parallel communication between domains. To decrease the error of FCS method, source region is automatically refined. The reflection boundary condition is handled by adding a symmetric source region at the opposite side of reflection boundary. Several benchmarks are calculated, and all results of calculation prove that the accuracy of JSNT-FCS is high enough. Response calculation of source range detector is performed based on the geometry of HBR-2, and the calculation results indicate that JSNT-FCS code can effectively eliminate the nonphysical oscillations of flux spatial distribution. (C) 2019 Elsevier Ltd. All rights reserved.
机译:开发了一种新的三维平行第一碰撞源代码JSNT-FCS,以减轻离散纵坐标法中的射线效应。 JSNT-FCS应用射线跟踪方法来获得笛卡尔和圆柱几何体的非碰撞通量。基于空间域分割算法实现并行计算。基于整个网格在每个域中执行光线跟踪,以避免域之间的并行通信。为了减少FCS方法的误差,源区域会自动优化。通过在反射边界的相对侧添加对称源区域来处理反射边界条件。计算了多个基准,所有计算结果证明,JSNT-FCS的准确性足够高。根据HBR-2的几何形状进行了源范围探测器的响应计算,计算结果表明JSNT-FCS代码可以有效消除通量空间分布的非物理振荡。 (C)2019 Elsevier Ltd.保留所有权利。

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