中子输运
计算机辅助设计
几何学
光线追踪(物理)
计算机科学
离散化
追踪
解析几何
辐射传输
功能(生物学)
计算科学
计算机辅助设计
实体造型
算法
中子
工程制图
物理
工程类
数学
数学分析
光学
蒙特卡罗方法
生物
量子力学
操作系统
进化生物学
统计
作者
Z. Chen,D. Wang,Tao He,G. Wang,Huayan Zheng
出处
期刊:U.S. Department of Energy Office of Scientific and Technical Information - OSTI OAI
日期:2013-07-01
摘要
The method of characteristics (MOC) is a very popular methodology in neutron transport calculation and numerical simulation in recent decades for its unique advantages. One of the key problems determining whether the MOC can be applied in complicated and highly heterogeneous geometry is how to combine an effective geometry processing method with MOC. Most of the existing MOC codes describe the geometry by lines and arcs with extensive input data, such as circles, ellipses, regular polygons and combination of them. Thus they have difficulty in geometry modeling, background meshing and ray tracing for complicated geometry domains. In this study, a new idea making use of a CAD solid modeler MCAM which is a CAD/Image-based Automatic Modeling Program for Neutronics and Radiation Transport developed by FDS Team in China was introduced for geometry modeling and ray tracing of particle transport to remove these geometrical limitations mentioned above. The diamond-difference scheme was applied to MOC to reduce the spatial discretization error of the flat flux approximation in theory. Based on MCAM and MOC, a new MOC code was developed and integrated into SuperMC system, which is a Super Multi-function Computational system for neutronics and radiation simulation. The numerical testing results demonstrated themore » feasibility and effectiveness of the new idea for geometry treatment in SuperMC. (authors)« less
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