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AN ANALYTICAL DERIVATION OF TRANSPORT-CORRECTED P_0 CROSS SECTIONS AND DIFFUSION COEFFICIENTS

机译:传输校正P_0横截面和扩散系数的分析推导

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Previous work by Herman et al.has described the computation of diffusion coefficients for hydrogen via the numerical solution of a 1-D, fixed-source transport problem. It has also been shown that these diffusion coefficients can be used to obtain accurate transport-corrected P_0 cross sections for hydrogen. In this paper, we present a new and more general analytical approach for the derivation of the diffusion coefficients from. We show analytically and numerically that, when the appropriate parameters are chosen, the analytical approach yields diffusion coefficients that are nearly identical to those in. The analytic approach is less computationally expensive than the method described in, and it illuminates the physics behind the computation of these diffusion coefficients. We also show that this analytical approach is equivalent to the in-scatter method provided the buckling is neglected and the neutron current energy spectrum from the analytical approach is used. Due to a page limitation imposed on this paper, the authors removed an Appendix and made several other changes that marginally reduced the information content of the mathematical analysis.
机译:由Herman等al.has以前的工作通过1 d,固定源传输问题的数值解描述扩散系数的计算为氢。还已经表明,这些扩散系数可以用来获得精确的传输校正P_0截面为氢。在本文中,我们提出了从扩散系数的推导一个新的,更全面的分析方法。我们显示解析和数值,当相应的参数被选择,是几乎相同的那些的分析方法的产率的扩散系数。该分析方法比方法中描述的以下计算上昂贵的,并且它照亮的计算背后的物理这些扩散系数。我们还表明,这种分析方法是等效于散射方法所提供的屈曲被忽略,并从使用的分析方法中子当前能量谱。由于对本文页面的限制,作者删除附录并作出轻微降低了数学分析的信息内容的其他一些变化。

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