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首页> 外文期刊>Annals of nuclear energy >Iterative resonance self-shielding methods using resonance integral table in heterogeneous transport lattice calculations
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Iterative resonance self-shielding methods using resonance integral table in heterogeneous transport lattice calculations

机译:异质输运格子计算中使用共振积分表的迭代共振自屏蔽方法

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This paper describes the iteration methods using resonance integral tables to estimate the effective res-onance cross sections in heterogeneous transport lattice calculations. Basically, these methods have been devised to reduce an effort to convert resonance integral table into subgroup data to be used in the phys-ical subgroup method. Since these methods do not use subgroup data but only use resonance integral tables directly, these methods do not include an error in converting resonance integral into subgroup data. The effective resonance cross sections are estimated iteratively for each resonance nuclide through the heterogeneous fixed source calculations for the whole problem domain to obtain the background cross sections. These methods have been implemented in the transport lattice code KARMA which uses the method of characteristics (MOC) to solve the transport equation. The computational results show that these iteration methods are quite promising in the practical transport lattice calculations.
机译:本文介绍了使用共振积分表估算异质输运网格计算中有效共振截面的迭代方法。基本上,已经设计了这些方法以减少将共振积分表转换为要在物理子组方法中使用的子组数据的工作。由于这些方法不使用子组数据,而仅直接使用谐振积分表,因此这些方法在将谐振积分转换为子组数据时不存在错误。通过针对整个问题域的异构固定源计算,迭代估算每个共振核素的有效共振截面,以获得背景截面。这些方法已在传输格码KARMA中实现,该代码使用特征方法(MOC)求解传输方程。计算结果表明,这些迭代方法在实际的输运格子计算中很有前途。

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