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MODELING METHODS FOR TIGHTLY PACKED GRANULAR FUEL

机译:紧固粒状燃料的建模方法

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The paper investigates methods for modeling the neutronic behavior of fuels with Stochastic Granular Structures (SGS) to a high degree of fidelity and validates the models against equivalent homogenized cases. Granular fuels have recently been the subject of renewed attention due to their many attractive properties and their design flexibility. However, many fuels considered cannot reach high packing fractions, thus limiting their power density and heavy metal inventory. Developing and modeling fuels with higher packing fractions is therefore very desirable. An algorithm was developed to closely replicate tightly-packed structures within a cylindrical container. MCNP6 simulations were carried out using the obtained sphere coordinates and different metrics obtained were compared to homogenized models as well as models with simpler arrangements. The results were in good agreement and validate employing this SGS modeling method when a more exact representation of the microstructure is required.
机译:本文研究了将随机粒状结构(SGS)建模到高度保真度的燃料中子行为的方法,并验证了对等同物均质化病例的模型。由于其许多有吸引力的性能及其设计灵活性,粒状燃料最近是由于其许多有吸引力的特性而重新关注的主题。然而,考虑了许多燃料不能达到高包装级分,因此限制了它们的功率密度和重金属库存。因此,具有更高的填充级分的开发和建模燃料非常理想。开发了一种算法以密切复制圆柱形容器内的紧密填充结构。使用所得球体坐标进行MCNP6模拟,并将获得的不同度量与均质模型以及具有更简单布置的型号进行比较。当需要需要更精确的微观结构表示时,结果符合良好的一致性并验证使用该SGS建模方法。

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