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Improvement of Fitting Method of Multiband Parameters for Cell Calculations

机译:单元格计算中多频带参数拟合方法的改进

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To accurately perform cell calculations of nuclear reactors, a new fitting procedure has been developed for calculating multiband parameters, which are necessary for effective cross section calculations. By using the new fitting procedure, the error of multiband parameters becomes always zero. Reactor cell calculations have been performed to compare the effective cross sections and the infinite multiplication factors etc. calculated using the multiband parameters obtained by the new and the conventional fitting procedures by using the cross section set based on the JENDL-3.1(1) library with 107 energy groups. It is found that there is a small difference of the calculational results between the two fitting procedures and it is found from burnup calculations that the difference of the infinite multiplication factors is not dependent on the burnup period up to about 30GWd/t. The onion skin effect can be exactly treated by dividing a fuel pellet to multiple regions and by using the multiband method. Thus the difference of burnup properties between two fitting procedures are investigated for the divided and the undivided fueled cells. The total inventory of Pu, Am etc. at the divided case is almost the same to the undivided case at the end of the burnup period. However it is found that the radial distribution of atomic density is slightly different between the two fitting procedures.
机译:为了准确地执行核反应堆的单元计算,已经开发了一种新的拟合程序来计算多频带参数,这对于有效的横截面计算是必需的。通过使用新的拟合过程,多频带参数的误差始终为零。通过使用基于JENDL-3.1(1)库的横截面集,已进行了反应堆计算以比较有效横截面和使用新的和常规拟合程序获得的多频带参数计算出的无限乘数等。 107个能量组。发现两种拟合程序之间的计算结果差异很小,并且从燃耗计算中发现,无限倍增因子的差异不取决于燃耗周期,直至约30GWd / t。通过将燃料芯块划分为多个区域并使用多波段方法,可以准确地处理洋葱皮效果。因此,对于分隔和未分隔的燃料电池,研究了两种拟合过程之间燃耗特性的差异。分割情况下的Pu,Am等的总库存与燃尽期结束时未分割的情况几乎相同。但是,发现两种拟合程序之间原子密度的径向分布略有不同。

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