首页> 外文会议>International conference on mathematics, computational methods reactor physics;MC 2009 >EXPERIENCE IN THE USE OF THE MONTE-CARLO CODE BASED TRACING ALGORITHM AND THE VOLUME FRACTION METHOD IN WER RADIATION SHIELDING CALCULATIONS
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EXPERIENCE IN THE USE OF THE MONTE-CARLO CODE BASED TRACING ALGORITHM AND THE VOLUME FRACTION METHOD IN WER RADIATION SHIELDING CALCULATIONS

机译:基于蒙特卡罗编码的跟踪算法和体积分数法在辐射屏蔽计算中的经验

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Monte-Carlo code based tracing algorithm is applied for converting combinatorial presentation of the problem geometry and source to a bit-mapped one with local conservation both the mass of original materials and the source yield for every spatial cell of the mesh. To make this transformation the volume fractions (VF) of original materials and source by spatial cells of the user supplied mesh are calculated by the tracing algorithm and the VF method is applied by introducing additional mixtures for spatial cells, where a few original materials are included. The use of the tracing algorithm makes this procedure fast and efficient. Received geometry and source approximation on the mesh ensures some improvement in convergence with mesh refinement. It also requires only minor changes in S_N transport codes, working with regular orthogonal meshes. Developed approach is tested in an example of WER-1200 radiation shielding calculations.
机译:基于Monte-Carlo代码的跟踪算法用于将问题的几何形状和源的组合表示转换为位图,同时局部保留原始材料的质量和网格每个空间像元的源产量。为了进行此转换,用户提供的网格的空间单元的原始材料和源的体积分数(VF)通过跟踪算法进行计算,并且VF方法通过为空间单元引入其他混合物来应用,其中包括一些原始材料。跟踪算法的使用使此过程快速而有效。在网格上接收到的几何图形和源近似值可确保网格细化在收敛性方面有所改善。使用规则的正交网格,也仅需要对S_N传输代码进行较小的更改。在WER-1200辐射屏蔽计算的示例中测试了开发的方法。

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