首页> 外文会议>International conference on the physics of reactors;PHYSOR 2012 >QUASI-HETEROGENEOUS EFFICIENT 3-D DISCRETE ORDINATES CANDU CALCULATIONS USING ATTILA
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QUASI-HETEROGENEOUS EFFICIENT 3-D DISCRETE ORDINATES CANDU CALCULATIONS USING ATTILA

机译:准异质有效3D离散量表示使用小提琴进行的Candu计算

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In this paper, 3-D quasi-heterogeneous large scale parallel Attila calculations of a generic CANDU test problem consisting of 42 complete fuel channels and a perpendicular to fuel reactivity device are presented. The solution method is that of discrete ordinates S_N and the computational model is quasi-heterogeneous, i.e. fuel bundle is partially homogenized into five homogeneous rings consistently with the DRAGON code model used by the industry for the incremental cross-section generation. In calculations, the HELIOS-generated 45 macroscopic cross-sections library was used. This approach to CANDU calculations has the following advantages: 1) it allows detailed bundle (and eventually channel) power calculations for each fuel ring in a bundle, 2) it allows the exact reactivity device representation for its precise reactivity worth calculation, and 3) it eliminates the need for incremental cross-sections. Our results are compared to the reference Monte Carlo MCNP solution. In addition, the Attila S_N method performance in CANDU calculations characterized by significant upscattering is discussed.
机译:在本文中,提出了由42个完整燃料通道和一个垂直于燃料反应装置组成的通用CANDU测试问题的3-D准异质大规模并行Attila计算。解决方法是离散坐标S_N的解决方法,计算模型是准异构的,即燃料束被部分均质化为五个均质环,与工业上用于增量截面生成的DRAGON代码模型一致。在计算中,使用了HELIOS生成的45个宏观截面库。这种用于CANDU计算的方法具有以下优点:1)它允许对束中每个燃料环进行详细的束(以及最终通道)功率计算; 2)可以为精确的反应性值进行精确的反应装置表示,以及3)它消除了对增量横截面的需要。我们的结果与参考蒙特卡洛MCNP解决方案进行了比较。此外,还讨论了CANDU计算中Attila S_N方法的性能,其特征在于明显的向上散射。

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