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Multigroup Pin Power Reconstruction With Two-dimensional Source Expansion And Corner Flux Discontinuity

机译:具有二维源扩展和角通量不连续性的多组引脚功率重构

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摘要

A pin power reconstruction method that is readily applicable to multigroup problems with superior accuracy is presented for applications involving rectangular fuel assemblies. It employs a two-dimensional (2D), fourth order Legendre expansion of the source distribution that naturally leads to a group-decoupled, 2D semi-analytic solution of the neutron diffusion equation. The four surface average currents and four corner fluxes are used as the boundary conditions to uniquely specify the homogenous solution. The corner fluxes and source expansion coefficients are iteratively determined using the condition of corner point balance and the orthogonal property of the Lengedre functions. Corner discontinuity is incorporated in the calculation of the corner fluxes which turns out to be very effective in the cases of enrichment zoning. The accuracy of the proposed method is assessed by performing the two-step core calculations for the L336C5. C5G7MOX, and MOX core transient benchmark problems and then by comparing with the direct whole-core transport solutions. The results indicate that the proposed method is as accurate as the fully analytic method and works well irrespective the number of groups. However, it is also noted that somewhat larger errors are inevitable at the peripheral assemblies near the reflector in which the error associated with a prioi generation of the homogenized cross-sections and form functions is not trivial.
机译:针对涉及矩形燃料组件的应用,提出了一种引脚功率重构方法,该方法可轻松地以优异的精度应用于多组问题。它采用了源分布的二维(2D),四阶勒让德展开,这自然导致了中子扩散方程的组解耦,二维半解析解。四个表面平均电流和四个角通量被用作边界条件,以唯一指定均匀解。使用角点平衡的条件和Lengedre函数的正交特性来迭代确定角通量和源扩展系数。拐角不连续性被纳入拐角通量的计算中,这在富集分区的情况下被证明是非常有效的。通过对L336C5执行两步核心计算,可以评估所提出方法的准确性。 C5G7MOX和MOX核心的瞬态基准测试问题,然后通过与直接全核传输解决方案进行比较。结果表明,所提出的方法与完全分析方法一样准确,并且不管组数如何都可以很好地工作。然而,还应注意,在反射器附近的外围组件处不可避免地会出现较大的误差,其中与均匀生成横截面和形状函数的先验产生的误差无关紧要。

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