基于伪衰变核形成的燃耗数据库压缩方法

Burnup lib compression method based on pseudo decay nuclides definement

  • 摘要: 燃耗数据库的构建决定了燃耗和衰变热计算的准确性,评价核数据库中的燃耗信息过于复杂,导致燃耗矩阵规模大,刚性强,计算效率低。从燃耗数据库的基本组成出发,考虑燃耗数据库中,各核素及其转化关系对中子学计算精度和重要核素核子密度计算精度的影响,并作为燃耗库压缩的依据。对于因裂变产物压缩而损失的衰变热计算精度,通过非线性最小二乘优化算法拟合衰变释热函数,构造伪衰变核代替裂变产物衰变热计算,以保持衰变热的计算精度。验证结果表明,原精细燃耗库中有超过1 500种核素,经压缩后保留不足200种核素。压缩后的燃耗数据库在有效增殖因子计算和核子密度计算中并未引入明显偏差。在衰变热计算方面,伪衰变核对于衰变热计算精度有显著的复原效果,对总功率贡献的计算偏差小于0.5%,满足衰变热计算精度的需求。

     

    Abstract: The construction of the burnup lib determines the accuracy of burnup and decay heat calculations. The evaluation of burnup information in the nuclear lib is complex, leading to a large, rigid, and inefficient burnup matrix. This paper begins with the basic composition of the burnup lib, considering the impact of each nuclide and its transformation relationships on the accuracy of neutronics calculations and target nuclide nuclear density calculations, which serves as the basis for the compression of the burnup lib. To address the decay heat calculation accuracy loss caused by the compression of fission products, a nonlinear least squares optimization algorithm is used to fit the decay heat release function, and pseudo-decay nuclides are constructed to replace the fission product decay heat calculation, thereby maintaining the accuracy of decay heat calculations. Verification results show that the original detailed burnup lib contains more than 1 500 nuclides, which are reduced to fewer than 200 nuclides after compression. The compressed burnup lib does not introduce significant deviations in the calculation of the effective multiplication factor and nuclear density. In terms of decay heat calculations, the pseudo-decay nuclides significantly restore the decay heat calculation accuracy, with the contribution of decay heat to total power having a calculation deviation of less than 0.5%, meeting the required accuracy for decay heat calculations.

     

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