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Technical Paper

TET2MCNP : A Conversion Program to Implement Tetrahedral-mesh Models in MCNP

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영어

Background: Tetrahedral-mesh geometries can be used in the MCNP code, but the MCNP code accepts only the geometry in the Abaqus input file format; hence, the existing tetrahedralmesh models first need to be converted to the Abacus input file format to be used in the MCNP code. In the present study, we developed a simple but useful computer program, TET2MCNP, for converting TetGen-generated tetrahedral-mesh models to the Abacus input file format. Materials and Methods: TET2MCNP is written in C++ and contains two components: one for converting a TetGen output file to the Abacus input file and the other for the reverse conversion process. The TET2MCP program also produces an MCNP input file. Further, the program provides some MCNP-specific functions: the maximum number of elements (i.e. , tetrahedrons) per part can be limited, and the material density of each element can be transferred to the MCNP input file. Results and Discussion: To test the developed program, two tetrahedral-mesh models were generated using TetGen and converted to the Abaqus input file format using TET2MCNP. Subsequently, the converted files were used in the MCNP code to calculate the object- and organaveraged absorbed dose in the sphere and phantom, respectively. The results show that the converted models provide, within statistical uncertainties, identical dose values to those obtained using the PHITS code, which uses the original tetrahedral-mesh models produced by the Tet- Gen program. The results show that the developed program can successfully convert TetGen tetrahedral-mesh models to Abacus input files. Conclusion: In the present study, we have developed a computer program, TET2MCNP, which can be used to convert TetGen-generated tetrahedral-mesh models to the Abaqus input file format for use in the MCNP code. We believe this program will be used by many MCNP users for implementing complex tetrahedral-mesh models, including computational human phantoms, in the MCNP code.

목차

ABSTRACT
 Introduction
 Materials and Method
  1. Overview of TET2MCNP
  2. Data import
  3. Subdivision
  4. Data export
 Results and Discussion
 Conclusion
 Acknowledgements
 References

저자정보

  • Min Cheol Han Department of Nuclear Engineering, Hanyang University, Seoul, Korea
  • Yeon Soo Yeom Department of Nuclear Engineering, Hanyang University, Seoul, Korea
  • Thang Tat Nguyen Department of Nuclear Engineering, Hanyang University, Seoul, Korea
  • Chansoo Choi Department of Nuclear Engineering, Hanyang University, Seoul, Korea
  • Hyun Su Lee Department of Nuclear Engineering, Hanyang University, Seoul, Korea
  • Chan Hyeong Kim Department of Nuclear Engineering, Hanyang University, Seoul, Korea

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