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A direct calculation method for subcritical multiplication factor in Reactor Monte Carlo code RMC

机译:反应堆蒙特卡罗代码RMC中亚临界乘数的直接计算方法

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The subcritical multiplication factor k(s), with the existence of external source neutrons is important for the evaluation of the neutron multiplication M, especially in the accelerator-driven system (ADS) performance assessment. The effective multiplication factor k(eff) calculated from the traditional source iteration method in Monte Carlo codes can't fully describe the subcritical system, acquiring the spurious neutron flux distribution. A direct Monte Carlo method called modified source iteration method by external source is introduced to calculate the subcritical multiplication factor k(s) directly, acquiring the real neutron flux at the same time. Compared with Monte Carlo fixed source calculation, the modified source iteration method has a great advantage in calculating the subcritical multiplication factor k(s), and its statistical error directly, especially for systems with complex geometry and a variety of fissile materials where much post-processing work on the tally results from fixed source calculation is needed. Moreover, much calculation time can be saved through this method when obtaining the subcritical multiplication factor k(s), with similar precision. This method has already been implemented in Reactor Monte Carlo code RMC including parallel calculation capability and can be effectively applied to the analysis of accelerator driven subcritical system (ADS). (C) 2018 Elsevier Ltd. All rights reserved.
机译:具有外部源中子的次临界倍增因子k(s)对于中子倍增M的评估非常重要,尤其是在加速器驱动系统(ADS)性能评估中。传统的源迭代方法在蒙特卡洛代码中计算出的有效倍增系数k(eff)不能完全描述亚临界系统,无法获得伪中子通量分布。引入了一种直接蒙特卡罗方法,称为外部源修正源迭代法,可以直接计算亚临界乘数k(s),同时获取实际中子通量。与蒙特卡洛固定源计算相比,改进后的源迭代方法在计算次临界乘数k(s)及其直接统计误差方面具有很大的优势,特别是对于几何形状复杂且易裂变材料种类繁多的系统,需要根据固定源计算对理货结果进行处理。而且,当以类似的精度获得亚临界乘数k(s)时,通过该方法可以节省很多计算时间。该方法已经在包括并行计算功能的Reactor Monte Carlo代码RMC中实现,并且可以有效地应用于加速器驱动的亚临界系统(ADS)的分析。 (C)2018 Elsevier Ltd.保留所有权利。

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