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QUASI-HETEROGENEOUS EFFICIENT 3-D DISCRETE ORDINATES CANDU CALCULATIONS USING ATTILA

机译:准异构效率3-D离散符合Attila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:本文介绍了由42个完全燃料通道和垂直于燃料反应性装置组成的通用蜡烛测试问题的3-D准异构大规模平行Attila计算。该解决方案的方法是,离散坐标的S_N和计算模型是准均相的,即燃料棒束的一部分被使用的业为递增的横截面产生DRAGON代码模型匀浆成五个均匀一致的环。在计算中,使用Helios产生的45个宏观横截面文库。这种方法对CANDU计算具有以下优点:1)允许束中的每个燃料环的详细束(和最终通道)功率计算,2)它允许精确的反应性设备表示其精确的反应性计算,以及3)它消除了对增量横截面的需求。我们的结果与参考蒙特卡罗MCNP解决方案进行了比较。此外,讨论了以显着提升的蜡烛计算中的ATTILA S_N方法性能是由显着提升的。

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