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A deterministic and Monte Carlo coupling method for PWR cavity radiation streaming calculation

机译:确定性和蒙特卡罗耦合法用于压水堆腔辐射流计算

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PWR cavity radiation streaming calculation is important for the evaluation of the radioactive dose rate in structural materials. Discrete Ordinates (S_N) method has been widely used to solve shielding problems, but it is difficult to apply to a complex geometry. Monte Carlo (MC) method can treat the geometry exactly but requires very long computing time to obtain acceptable statistic deviations. Thus, an S_N-MC coupling method is adopted in order to combine the advantages of both S_N method and MC method in PWR cavity radiation streaming calculations. To develop this coupling method, two surface source models, the combined surface source model (CSSM) and the single surface source model (SSSM), are proposed and analyzed. From the numerical results two conclusions can be drawn. (1) The S_N-MC coupling method offers a speedup factor of 2-20 compared with the MC method to obtain the same statistic deviations. (2) In the S_N-MC coupling method, the CSSM is more efficient than the SSSM in reducing statistic deviations.
机译:PWR腔辐射流计算对于评估结构材料中的放射性剂量率很重要。离散纵坐标(S_N)方法已广泛用于解决屏蔽问题,但很难应用于复杂的几何图形。蒙特卡洛(MC)方法可以精确地处理几何,但需要非常长的计算时间才能获得可接受的统计偏差。因此,为了结合S_N方法和MC方法在PWR腔辐射流计算中的优势,采用S_N-MC耦合方法。为了开发这种耦合方法,提出并分析了两个面源模型,即组合面源模型(CSSM)和单面源模型(SSSM)。从数值结果可以得出两个结论。 (1)与MC方法相比,S_N-MC耦合方法提供2-20的加速因子,以获得相同的统计偏差。 (2)在S_N-MC耦合方法中,CSSM在减少统计偏差方面比SSSM更有效。

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