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Comparisons of cell calculations for uranium-free light water reactor fuels

机译:无铀轻水反应堆燃料电池计算的比较

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An effective way to reduce the large quantities of Pu currently accumulated worldwide would be to use uranium-free fuel in light water reactors (LWRs) so that no new Pu is produced. Such a possibility could be provided by an LWR fuel consisting of Pu in a neutronically inert matrix. It may be necessary to add a burnable absorber or thorium to reduce the reactivity swing during burnup. The methods and data currently used for LWR analyses have not been tested in conjunction with such exotic fuel materials. An international exercise has accordingly been launched to compare the relative performance of different code systems and the accuracy of the basic data. Comparison of the results of cell calculations done with fixed isotopic densities against reference Monte Carlo results shows fairly small but systematic differences in the multiplication factors. A sensitivity analysis done with different basic cross section libraries and the same code system allows one to distinguish between the effects of the codes and those of the databases. The results of the burnup calculations indicate a fair agreement in k(infinity) both at beginning of life (BOL) and after 1200 days of irradiation end of life (EOL) under conditions representative of a present-day pressurized water reactor. At BOL, the fuel temperature coefficients agree fairly well among the different contributions, but unacceptably large differences are observed at EOL. The void coefficients agree well for low voidage, but for void fractions >90, there are significant effects mostly due to the databases used. The agreement in the calculated boron worths is good. References: 36
机译:减少目前在世界范围内积累的大量钚的一个有效方法是在轻水反应堆(LWRs)中使用无铀燃料,这样就不会产生新的钚。这种可能性可以由中子惰性基质中的Pu组成的轻水堆燃料提供。可能需要添加可燃吸收剂或钍,以减少燃尽期间的反应性摆动。目前用于轻水堆分析的方法和数据尚未与这种奇特的燃料材料一起进行测试。因此,开展了一项国际活动,以比较不同代码系统的相对性能和基本数据的准确性。将固定同位素密度的细胞计算结果与参考蒙特卡罗结果进行比较,表明倍增因子的差异相当小但系统性。使用不同的基本横截面库和相同的代码系统进行的敏感性分析可以区分代码和数据库的影响。燃尽计算结果表明,在代表当今压水反应堆的条件下,在寿命开始 (BOL) 和 1200 天辐照后 [寿命结束 (EOL)] 的 k(无穷大)中均有相当的一致性。在 BOL 中,不同贡献之间的燃油温度系数相当一致,但在 EOL 中观察到不可接受的巨大差异。对于低空隙率,空隙系数非常吻合,但对于空隙率>90%,主要由于使用的数据库而产生显着影响。计算出的硼价值的一致性是好的。[参考文献: 36]

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