Zheng Huaqing
Chinese Academy of Sciences
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Zheng Huaqing.
Chinese Physics C | 2014
Chen Zhenping; Zheng Huaqing; Sun Guangyao; Song Jing; Hao Lijuan; Hu Liqin; Wu Yican
The method of characteristics (MOC) is widely used for neutron transport calculation in recent decades. However, the key problem determining whether MOC can be applied in highly heterogeneous geometry is how to combine an effective geometry modeling method with it. Most of the existing MOC codes conventionally describe the geometry model just by lines and arcs with extensive input data. Thus they have difficulty in geometry modeling and ray tracing for complicated geometries. In this study, a new method making use of a CAD-based automatic modeling tool 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 those limitations. The diamond-difference scheme was applied to MOC to reduce the spatial discretization errors of the flat flux approximation. 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 results demonstrated the feasibility and effectiveness of the new method for neutron transport calculation in MOC.Our new method makes use of a CAD-based automatic modeling tool, MCAM, for geometry modeling and ray tracing of particle transport in method of characteristics (MOC). It was found that it could considerably enhance the capability of MOC to deal with more complicated models for neutron transport calculation. In our study, the diamond-difference scheme was applied to MOC to reduce the spatial discretization errors of the flat flux approximation. Based on MCAM and MOC, a new 2D MOC code was developed and integrated into the SuperMC system, which is a Super Multi-function Computational system for neutronics and radiation simulation. The numerical results demonstrated the feasibility and effectiveness of the new method for neutron transport calculation in MOC.
Archive | 2013
Chen Zhenping; Zheng Huaqing; Sun Guangyao; Song Jing; Wu Yican
Archive | 2013
Li Gui; Ren Qiang; Wang Yu; Zheng Huaqing; Wu Yican
Archive | 2015
Zheng Huaqing; Song Jing; Sun Guangyao; Hao Lijuan; Wu Yican
Archive | 2013
Li Gui; Zheng Huaqing; Song Jing; Sun Guangyao; Wu Yican
Archive | 2015
Chen Zhenping; Song Jing; Wu Bin; Zheng Huaqing; Wu Yican
Archive | 2013
Song Jing; Zheng Huaqing; Long Pengcheng; Hao Lijuan; Wu Yican
Archive | 2013
Pei Xi; Zheng Huaqing; Cao Ruifen; Wu Yican
Archive | 2017
Hu Liqin; Zheng Huaqing
Archive | 2016
Ren Qiang; Wu Yican; Hu Liqin; Zheng Huaqing; Cao Ruifen; Pei Xi