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Development of Radiation Transport Code in Three-Dimensional (X, Y, Z) Geometry for Shielding Analyses by Direct Integration Method

机译:直接积分法开发用于屏蔽分析的三维(X,Y,Z)几何辐射传输代码

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摘要

A three-dimensional radiation transport code TRISTAN has been developed by applying the method of direct integration to the group-flux calculation in order to enhance the accuracy of shielding analysis. It uses group-angle transfer matrices derived from the double-differential cross section data instead of the Legendre polynomial expansion.In order to improve the numerical accuracy, a technique to separate radiation into two components (the scattered and the unscattered) is adopted and the balance equation of radiation flux is applied to the solution method. Two new techniques, a stratification of the angular mesh and a kind of the forward-adjoint coupling, are introduced to enhance its applicability to the practical shielding analysis.The validity of the TRISTAN is verified by making comparison with the results of the Monte Carlo code MCNP, and with the experimental values in the JRR-4 streaming experiments.
机译:通过将直接积分方法应用于群通量计算,开发了三维辐射传输代码TRISTAN,以提高屏蔽分析的准确性。它使用从双微分横截面数据得出的群角传递矩阵代替勒让德多项式展开。为了提高数值精度,采用了一种将辐射分为两个分量(散射和非散射)的技术,并且辐射通量平衡方程应用于求解方法。引入了两种新技术,即角网格分层和一种前向耦合,以提高其在实际屏蔽分析中的适用性。通过与蒙特卡洛代码的比较,验证了TRISTAN的有效性。 MCNP,并具有JRR-4流实验中的实验值。

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