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A Linear Source Approximation Scheme for the Method of Characteristics

机译:特征方法的线性源近似方案

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A linear source (LS) approximation scheme is presented for the two-dimensional method of characteristics (MOC). The LS approximation relies on the computation of track-based spatial moments over source regions to obtain the LS expansion coefficients. The proposed LS scheme improves the solution accuracy relative to the constant or flat source (FS) approximation. The LS scheme is capable of treating arbitrarily shaped source regions under isotopic or anisotropic scattering assumptions. The LS scheme is also compatible with standard coarse-mesh finite difference acceleration. Numerical tests presented for the C5G7 mixed oxide benchmark show that for comparable accuracy with respect to the reference solution, the LS approximation can reduce the run time by a factor of 4 and the memory requirements by a factor of 10 relative to the FS scheme. This is because the LS scheme permits the use of a much coarser grid than the FS scheme. Numerical tests presented for simple cold critical core configurations with anisotropic scattering confirm the advantage of using the LS scheme.
机译:针对二维特征方法(MOC),提出了一种线性源(LS)近似方案。 LS近似依赖于源区域上基于轨道的空间矩的计算,以获得LS膨胀系数。相对于恒定或平坦源(FS)近似,所提出的LS方案提高了求解精度。 LS方案能够在同位素或各向异性散射假设下处理任意形状的源区。 LS方案还与标准的粗网格有限差分加速兼容。针对C5G7混合氧化物基准测试所进行的数值测试表明,相对于参考解决方案,其准确性与FS方案相比,LS近似可将运行时间减少4倍,并将内存需求减少10倍。这是因为LS方案允许使用比FS方案更粗糙的网格。对具有各向异性散射的简单冷关键堆芯配置进行的数值测试证实了使用LS方案的优势。

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